General Information of Drug Transporter (DT)
DT ID DTD0024 Transporter Info
Gene Name SLC22A6
Transporter Name Organic anion transporter 1
Gene ID
9356
UniProt ID
Q4U2R8
Exogenous factors (drugs, dietary constituents, etc.) Modulation of This DT (EGM)

Chemical Compound

  DT Modulation1

Probenecid inhibits the reaction SLC22A6 protein affects the transport of traumatic acid [89]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Probenecid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Probenecid inhibits the reaction SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Probenecid inhibits the reaction SLC22A6 protein results in increased import of p-Aminohippuric Acid [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to 9-((2-phosphonylmethoxy)ethyl)guanine [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to 9-(S)-(3-hydroxy-2-(phosphonomethoxy)propyl)adenine [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to adefovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation8

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation9

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to N(6)-cyclopropyl-9-(2-phosphonylmethoxyethyl)-2,6-diaminopurine [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation10

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to Tenofovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation11

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation12

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of 7-hydroxycoumarin metabolite [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation13

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation14

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation15

Probenecid inhibits the reaction SLC22A6 results in increased uptake of Aristolochic Acids which results in increased chemical synthesis of 7-(deoxyadenosin-N(6)-yl)aristolactam I [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation16

Probenecid inhibits the reaction SLC22A6 results in increased uptake of Aristolochic Acids which results in increased chemical synthesis of 7-(deoxyguanosin-N(2)-yl)aristolactam I [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation17

Probenecid results in decreased activity of SLC22A6 protein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Piroxicam results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Ketoprofen results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Ketoprofen [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Indomethacin results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Indomethacin [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Salicylic Acid results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Salicylic Acid [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Cephaloridine inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Cephaloridine [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Diclofenac results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Naproxen results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Phenacetin results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

SLC22A6 protein results in increased import of Cidofovir [75]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased susceptibility to Cidofovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

SLC22A6 protein results in increased uptake of and results in increased susceptibility to Cidofovir [67]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Mefenamic Acid results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Sulindac results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Luteolin results in decreased activity of SLC22A6 protein [56]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Doxycycline inhibits the reaction SLC22A6 protein results in increased uptake of Anions [33]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Minocycline inhibits the reaction SLC22A6 protein results in increased uptake of Anions [33]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Oxytetracycline inhibits the reaction SLC22A6 protein results in increased uptake of Anions [33]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Fluorescein inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Linoleic Acid results in decreased activity of SLC22A6 protein [45]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Cefaclor inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

1-Methyl-4-phenylpyridinium inhibits the reaction SLC22A6 protein results in increased uptake of Cimetidine [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Cimetidine inhibits the reaction SLC22A6 protein affects the transport of p-Aminohippuric Acid [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased uptake of Cimetidine [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein results in increased uptake of Cimetidine [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

2-amino-1-methyl-6-phenylimidazo(4,5-b)pyridine inhibits the reaction SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

2-amino-1-methyl-6-phenylimidazo(4,5-b)pyridine results in decreased activity of SLC22A6 protein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Emodin results in decreased activity of SLC22A6 protein [45]

Regulation Mechanism

Transcription Factor Info

  DT Modulation1

Benzo(a)pyrene affects the methylation of SLC22A6 promoter [71]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Benzo(a)pyrene results in decreased activity of SLC22A6 protein [55]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Benzo(a)pyrene results in increased methylation of SLC22A6 3' UTR [71]

Regulation Mechanism

Transcription Factor Info

  1-Methyl-4-phenylpyridinium

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

1-Methyl-4-phenylpyridinium inhibits the reaction SLC22A6 protein results in increased uptake of Cimetidine [58]

Regulation Mechanism

Transcription Factor Info

  2,4-Dichlorophenoxyacetic Acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased uptake of 2,4-Dichlorophenoxyacetic Acid [59]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of 2,4-Dichlorophenoxyacetic Acid [60]

Regulation Mechanism

Transcription Factor Info

  4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  5,7-dihydroxy-6-methoxy-2-phenylchromen-4-one

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

5,7-dihydroxy-6-methoxy-2-phenylchromen-4-one inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [57]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

5,7-dihydroxy-6-methoxy-2-phenylchromen-4-one results in decreased activity of SLC22A6 protein [57]

Regulation Mechanism

Transcription Factor Info

  6-carboxyfluorescein

           9 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

2-amino-1-methyl-6-phenylimidazo(4,5-b)pyridine inhibits the reaction SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

7-hydroxycoumarin inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

7-hydroxycoumarin metabolite inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

glutaric acid promotes the reaction SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Probenecid inhibits the reaction SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation8

SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [62]

Regulation Mechanism

Transcription Factor Info

  DT Modulation9

Unithiol analog inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [62]

Regulation Mechanism

Transcription Factor Info

  7-(deoxyadenosin-N(6)-yl)aristolactam I

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Probenecid inhibits the reaction SLC22A6 results in increased uptake of Aristolochic Acids which results in increased chemical synthesis of 7-(deoxyadenosin-N(6)-yl)aristolactam I [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 results in increased uptake of Aristolochic Acids which results in increased chemical synthesis of 7-(deoxyadenosin-N(6)-yl)aristolactam I [63]

Regulation Mechanism

Transcription Factor Info

  7-(deoxyguanosin-N(2)-yl)aristolactam I

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Probenecid inhibits the reaction SLC22A6 results in increased uptake of Aristolochic Acids which results in increased chemical synthesis of 7-(deoxyguanosin-N(2)-yl)aristolactam I [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 results in increased uptake of Aristolochic Acids which results in increased chemical synthesis of 7-(deoxyguanosin-N(2)-yl)aristolactam I [63]

Regulation Mechanism

Transcription Factor Info

  7-hydroxycoumarin

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

7-hydroxycoumarin inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

7-hydroxycoumarin metabolite inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of 7-hydroxycoumarin metabolite [61]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein results in increased uptake of 7-hydroxycoumarin metabolite [61]

Regulation Mechanism

Transcription Factor Info

  9-((2-phosphonylmethoxy)ethyl)guanine

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

9-((2-phosphonylmethoxy)ethyl)guanine analog inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to 9-((2-phosphonylmethoxy)ethyl)guanine [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Quercetin inhibits the reaction SLC22A6 protein results in increased susceptibility to 9-((2-phosphonylmethoxy)ethyl)guanine analog [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein results in increased susceptibility to 9-((2-phosphonylmethoxy)ethyl)guanine [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

SLC22A6 protein results in increased susceptibility to 9-((2-phosphonylmethoxy)ethyl)guanine analog [64]

Regulation Mechanism

Transcription Factor Info

  Acetylcysteine

         10 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

adipic acid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Glutarates inhibits the reaction SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Ketoglutaric Acids inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation8

SLC22A6 protein results in increased transport of Acetylcysteine co-treated with Mercury [66]

Regulation Mechanism

Transcription Factor Info

  DT Modulation9

SLC22A6 protein results in increased transport of Acetylcysteine co-treated with Methylmercury Compounds [66]

Regulation Mechanism

Transcription Factor Info

  DT Modulation10

SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  adefovir

           7 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

adefovir inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to adefovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

quercetin 3'-sulfate inhibits the reaction SLC22A6 protein affects the susceptibility to adefovir [32]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein affects the susceptibility to adefovir [32]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

SLC22A6 protein results in increased susceptibility to adefovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

SLC22A6 protein results in increased uptake of adefovir [60]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

SLC22A6 protein results in increased uptake of and results in increased susceptibility to adefovir [67]

Regulation Mechanism

Transcription Factor Info

  adipic acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

adipic acid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

adipic acid inhibits the reaction SLC22A6 protein results in increased transport of 2-amino-3-(2-amino-2-carboxyethylsulfanyl-mercuricsulfanyl)-propionic acid analog [68]

Regulation Mechanism

Transcription Factor Info

  Amitriptyline

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Amitriptyline inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  aristolochic acid I

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

aristolochic acid I inhibits the reaction SLC22A6 results in increased uptake of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

aristolochic acid I promotes the reaction SLC22A6 results in increased export of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

wedelolactone results in decreased activity of SLC22A6 protein which results in increased susceptibility to and results in increased activity of aristolochic acid I [56]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

wogonin results in decreased activity of SLC22A6 protein which results in increased susceptibility to and results in increased activity of aristolochic acid I [56]

Regulation Mechanism

Transcription Factor Info

  aurantio-obtusin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

aurantio-obtusin results in decreased activity of SLC22A6 protein [45]

Regulation Mechanism

Transcription Factor Info

  baicalein

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

baicalein results in decreased activity of SLC22A6 protein [56]

Regulation Mechanism

Transcription Factor Info

  Benzbromarone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Benzbromarone inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  bisphenol A

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol A promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [72]

Regulation Mechanism

Transcription Factor Info

  bisphenol F

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol F promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [72]

Regulation Mechanism

Transcription Factor Info

  bisphenol S

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

bisphenol S inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [72]

Regulation Mechanism

Transcription Factor Info

  Cadmium Chloride

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cadmium Chloride results in increased expression of SLC22A6 mRNA [73]

Regulation Mechanism

Transcription Factor Info

  Cefdinir

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefdinir inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Cefdinir [74]

Regulation Mechanism

Transcription Factor Info

  cefoselis

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

cefoselis inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  Cefotiam

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefotiam inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  Ceftibuten

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ceftibuten inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Ceftibuten [74]

Regulation Mechanism

Transcription Factor Info

  Ceftizoxime

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ceftizoxime inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Ceftizoxime [74]

Regulation Mechanism

Transcription Factor Info

  Chlorides

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Chlorides promotes the reaction SLC22A6 protein results in increased uptake of Glutarates [53]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Chlorides promotes the reaction SLC22A6 protein results in increased uptake of ochratoxin A [53]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Chlorides promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [53]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Chlorides results in increased activity of SLC22A6 protein [53]

Regulation Mechanism

Transcription Factor Info

  chlorpyrifos-methyl

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

chlorpyrifos-methyl inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  chrysophanic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

chrysophanic acid results in decreased activity of SLC22A6 protein [45]

Regulation Mechanism

Transcription Factor Info

  Cisplatin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cisplatin results in decreased expression of SLC22A6 protein [76]

Regulation Mechanism

Transcription Factor Info

  clothianidin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

clothianidin results in decreased activity of SLC22A6 protein [54]

Regulation Mechanism

Transcription Factor Info

  cyazofamid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

cyazofamid inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [77]

Regulation Mechanism

Transcription Factor Info

  Diazepam

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Diazepam inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  estrone sulfate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased uptake of estrone sulfate [74]

Regulation Mechanism

Transcription Factor Info

  Fenitrothion

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Fenitrothion inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  Genistein

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased uptake of Genistein analog [32]

Regulation Mechanism

Transcription Factor Info

  gluconic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

gluconic acid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  glutaric acid

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

glutaric acid inhibits the reaction SLC22A6 protein results in increased transport of 2-amino-3-(2-amino-2-carboxyethylsulfanyl-mercuricsulfanyl)-propionic acid analog [68]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

glutaric acid promotes the reaction SLC22A6 protein results in increased import of 6-carboxyfluorescein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

glutaric acid promotes the reaction SLC22A6 results in increased export of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

glutaric acid results in increased activity of SLC22A6 protein [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

SLC22A6 protein results in increased import of glutaric acid [42]

Regulation Mechanism

Transcription Factor Info

  Glutathione

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Glutathione [65]

Regulation Mechanism

Transcription Factor Info

  Leucovorin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased uptake of Leucovorin [74]

Regulation Mechanism

Transcription Factor Info

  mercuric oxide

           9 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

adipic acid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Glutarates inhibits the reaction SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Ketoglutaric Acids inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation8

SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Glutathione [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation9

SLC22A6 protein results in increased uptake of mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  Methotrexate

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Resveratrol inhibits the reaction SLC22A6 protein results in increased uptake of Methotrexate [81]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

rhein metabolite inhibits the reaction SLC22A6 protein results in increased uptake of Methotrexate [82]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

SLC22A6 protein results in increased susceptibility to Methotrexate [81]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein results in increased uptake of Methotrexate [74]

Regulation Mechanism

Transcription Factor Info

  methylmercury cysteine

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased transport of methylmercury cysteine [83]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 results in increased transport of methylmercury cysteine [84]

Regulation Mechanism

Transcription Factor Info

  Mianserin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Mianserin inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  obtusifolin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

obtusifolin results in decreased activity of SLC22A6 protein [45]

Regulation Mechanism

Transcription Factor Info

  p-Aminohippuric Acid

         57 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

5,7-dihydroxy-6-methoxy-2-phenylchromen-4-one inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [57]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

9-((2-phosphonylmethoxy)ethyl)guanine analog inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

adefovir inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Amitriptyline inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

aristolochic acid I inhibits the reaction SLC22A6 results in increased uptake of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

aristolochic acid I promotes the reaction SLC22A6 results in increased export of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

bisphenol A promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [72]

Regulation Mechanism

Transcription Factor Info

  DT Modulation8

bisphenol F promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [72]

Regulation Mechanism

Transcription Factor Info

  DT Modulation9

bisphenol S inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [72]

Regulation Mechanism

Transcription Factor Info

  DT Modulation10

Cefaclor inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation11

Cefdinir inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation12

cefoselis inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation13

Cefotiam inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation14

Ceftibuten inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation15

Ceftizoxime inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation16

Cephaloridine inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [74]

Regulation Mechanism

Transcription Factor Info

  DT Modulation17

Chlorides promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [53]

Regulation Mechanism

Transcription Factor Info

  DT Modulation18

chlorpyrifos-methyl inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation19

Cimetidine inhibits the reaction SLC22A6 protein affects the transport of p-Aminohippuric Acid [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation20

cyazofamid inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [77]

Regulation Mechanism

Transcription Factor Info

  DT Modulation21

Diazepam inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation22

Fenitrothion inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation23

Fluorescein inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation24

Glutarates promotes the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation25

glutaric acid promotes the reaction SLC22A6 results in increased export of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation26

Malathion inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation27

Mianserin inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation28

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased susceptibility to mercuric oxide co-treated with Acetylcysteine [65]

Regulation Mechanism

Transcription Factor Info

  DT Modulation29

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased transport of 2-amino-3-(2-amino-2-carboxyethylsulfanyl-mercuricsulfanyl)-propionic acid [85]

Regulation Mechanism

Transcription Factor Info

  DT Modulation30

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased transport of 2-amino-3-(2-amino-2-carboxyethylsulfanyl-mercuricsulfanyl)-propionic acid analog [68]

Regulation Mechanism

Transcription Factor Info

  DT Modulation31

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased uptake of 2,4-Dichlorophenoxyacetic Acid [59]

Regulation Mechanism

Transcription Factor Info

  DT Modulation32

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased uptake of Cimetidine [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation33

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased uptake of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation34

Penicillin G inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation35

Probenecid inhibits the reaction SLC22A6 protein results in increased import of p-Aminohippuric Acid [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation36

Probenecid inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation37

quercetin 3'-sulfate inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [32]

Regulation Mechanism

Transcription Factor Info

  DT Modulation38

Quercetin inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [86]

Regulation Mechanism

Transcription Factor Info

  DT Modulation39

Resveratrol inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [81]

Regulation Mechanism

Transcription Factor Info

  DT Modulation40

rhein inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [82]

Regulation Mechanism

Transcription Factor Info

  DT Modulation41

rhein metabolite inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [82]

Regulation Mechanism

Transcription Factor Info

  DT Modulation42

SLC22A6 protein affects the transport of p-Aminohippuric Acid [58]

Regulation Mechanism

Transcription Factor Info

  DT Modulation43

SLC22A6 protein results in increased import of p-Aminohippuric Acid [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation44

SLC22A6 protein results in increased secretion of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation45

SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation46

SLC22A6 results in increased export of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation47

SLC22A6 results in increased uptake of p-Aminohippuric Acid [63]

Regulation Mechanism

Transcription Factor Info

  DT Modulation48

Succinic Acid results in increased activity of SLC22A6 protein which results in increased uptake of p-Aminohippuric Acid [87]

Regulation Mechanism

Transcription Factor Info

  DT Modulation49

Sulfobromophthalein inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation50

Taurocholic Acid inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation51

Tenofovir inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation52

Tobacco Smoke Pollution inhibits the reaction SLC22A6 protein results in increased import of p-Aminohippuric Acid [42]

Regulation Mechanism

Transcription Factor Info

  DT Modulation53

Triazolam inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  DT Modulation54

Unithiol inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation55

Unithiol metabolite inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation56

Unithiol metabolite promotes the reaction SLC22A6 protein results in increased secretion of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation57

Unithiol promotes the reaction SLC22A6 protein results in increased secretion of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  Penicillin G

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Penicillin G inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  perfluoro-n-heptanoic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased uptake of perfluoro-n-heptanoic acid [88]

Regulation Mechanism

Transcription Factor Info

  perfluorooctanoic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased uptake of perfluorooctanoic acid [88]

Regulation Mechanism

Transcription Factor Info

  pyrazinoic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

pyrazinoic acid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  quercetin 3'-sulfate

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

quercetin 3'-sulfate inhibits the reaction SLC22A6 protein affects the susceptibility to adefovir [32]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

quercetin 3'-sulfate inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [32]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

SLC22A6 protein results in increased uptake of quercetin 3'-sulfate [32]

Regulation Mechanism

Transcription Factor Info

  Ranitidine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased uptake of Ranitidine [90]

Regulation Mechanism

Transcription Factor Info

  rhein

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

rhein inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [82]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

rhein metabolite inhibits the reaction SLC22A6 protein results in increased uptake of Methotrexate [82]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

rhein metabolite inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [82]

Regulation Mechanism

Transcription Factor Info

  Salicylates

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Salicylates inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  sodium arsenite

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

sodium arsenite affects the methylation of SLC22A6 gene [92]

Regulation Mechanism

Transcription Factor Info

  Succinic Acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Succinic Acid results in increased activity of SLC22A6 protein [87]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Succinic Acid results in increased activity of SLC22A6 protein which results in increased uptake of p-Aminohippuric Acid [87]

Regulation Mechanism

Transcription Factor Info

  Sulfobromophthalein

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Sulfobromophthalein inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  Taurocholic Acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Taurocholic Acid inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  Tenofovir

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Probenecid inhibits the reaction SLC22A6 protein results in increased susceptibility to Tenofovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased import of Tenofovir [75]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

SLC22A6 protein results in increased susceptibility to Tenofovir [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein results in increased uptake of and results in increased susceptibility to Tenofovir [67]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Tenofovir inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [64]

Regulation Mechanism

Transcription Factor Info

  Tetracycline

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 protein results in increased export of Tetracycline [33]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of Tetracycline [33]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Tetracycline inhibits the reaction SLC22A6 protein results in increased uptake of Anions [33]

Regulation Mechanism

Transcription Factor Info

  Thiram

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Thiram results in increased expression of SLC22A6 mRNA [93]

Regulation Mechanism

Transcription Factor Info

  traumatic acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Probenecid inhibits the reaction SLC22A6 protein affects the transport of traumatic acid [89]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein affects the transport of traumatic acid [89]

Regulation Mechanism

Transcription Factor Info

  Triazolam

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Triazolam inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info

  Unithiol

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Unithiol analog inhibits the reaction SLC22A6 protein results in increased uptake of 6-carboxyfluorescein [62]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Unithiol inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Unithiol metabolite inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Unithiol metabolite promotes the reaction SLC22A6 protein results in increased secretion of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Unithiol promotes the reaction SLC22A6 protein results in increased secretion of p-Aminohippuric Acid [78]

Regulation Mechanism

Transcription Factor Info

  Uric Acid

         10 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Benzbromarone inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

gluconic acid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Glutarates promotes the reaction SLC22A6 protein results in increased uptake of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation5

Ketoglutaric Acids inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation6

p-Aminohippuric Acid inhibits the reaction SLC22A6 protein results in increased uptake of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation7

Probenecid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation8

pyrazinoic acid inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation9

Salicylates inhibits the reaction SLC22A6 protein affects the transport of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  DT Modulation10

SLC22A6 protein results in increased uptake of Uric Acid [13]

Regulation Mechanism

Transcription Factor Info

  wedelolactone

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

wedelolactone results in decreased activity of SLC22A6 protein [56]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

wedelolactone results in decreased activity of SLC22A6 protein which results in increased susceptibility to and results in increased activity of aristolochic acid I [56]

Regulation Mechanism

Transcription Factor Info

  wogonin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

wogonin results in decreased activity of SLC22A6 protein [56]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

wogonin results in decreased activity of SLC22A6 protein which results in increased susceptibility to and results in increased activity of aristolochic acid I [56]

Regulation Mechanism

Transcription Factor Info

Environmental toxicant

  Mercury

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

SLC22A6 gene SNP affects the susceptibility to and affects the abundance of Mercury [79]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 gene SNP affects the susceptibility to Mercury [80]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

SLC22A6 protein results in increased transport of Acetylcysteine co-treated with Mercury [66]

Regulation Mechanism

Transcription Factor Info

Approved Drug

  Probenecid

         29 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Probenecid inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 6.3 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Probenecid inhibits the transportation of Adefovir by SLC22A6 (IC50 = 7.4 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation3

Probenecid inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 6.5 microM) [3]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation4

Probenecid inhibits the transportation of Aminohippuric acid by SLC22A6 (Ki = 12.1 microM) [4]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation5

Probenecid inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 17 microM) [5]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Oocytes-OAT1

  DT Modulation6

Probenecid inhibits the transportation of Cidofovir by SLC22A6 (IC50 = 3.9 microM) [6]

Affected Drug/Substrate

Cidofovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation7

Probenecid inhibits the transportation of Dimesna by SLC22A6 (Ki = 26 microM) [7]

Affected Drug/Substrate

Dimesna Modulation Type Inhibition

Cell System

Human cervical cancer cell line (Hela)-OAT1

  DT Modulation8

Probenecid inhibits the transportation of Methotrexate by SLC22A6 (IC50 = 17 microM) [5]

Affected Drug/Substrate

Methotrexate Modulation Type Inhibition

Cell System

Oocytes-OAT1

  DT Modulation9

Probenecid inhibits the transportation of Ochratoxin A by SLC22A6 (Ki = 4.29 microM) [8]

Affected Drug/Substrate

Ochratoxin A Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation10

Probenecid inhibits the transportation of Aminohippuric acid by SLC22A6 [9]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  DT Modulation11

Probenecid inhibits the activity of SLC22A6 [10], [11]

  DT Modulation12

Probenecid inhibits the activity of SLC22A6 [25]

  Betamipron

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Betamipron inhibits the transportation of Adefovir by SLC22A6 (IC50 = 6 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Betamipron inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 16.2 microM) [3]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation3

Betamipron inhibits the transportation of Aminohippuric acid by SLC22A6 (Ki = 23.6 microM) [4]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation4

Betamipron inhibits the activity of SLC22A6 [14]

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Piroxicam

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Piroxicam inhibits the transportation of Adefovir by SLC22A6 (IC50 = 20.5 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Piroxicam inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 62.8 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation3

Piroxicam inhibits the transportation of Ochratoxin A by SLC22A6 (Ki = 19.8 microM) [8]

Affected Drug/Substrate

Ochratoxin A Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation4

Piroxicam inhibits the activity of SLC22A6 [8]

  Ketoprofen

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ketoprofen inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 1.4 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Ketoprofen inhibits the transportation of Adefovir by SLC22A6 (IC50 = 1.3 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation3

Ketoprofen inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 4.34 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Indomethacin

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Indomethacin inhibits the transportation of Adefovir by SLC22A6 (IC50 = 3 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Indomethacin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 3.83 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation3

Indomethacin inhibits the activity of SLC22A6 [18]

  Simvastatin

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Simvastatin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 41.5 microM) [16]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Oocytes-OAT1

  DT Modulation2

Simvastatin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 73.6 microM) [17]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation3

Simvastatin inhibits the activity of SLC22A6 [16]

  Adefovir

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Adefovir inhibits the transportation of Ibuprofen by SLC22A6 (IC50 = 1.5 microM) [2]

Affected Drug/Substrate

Ibuprofen Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Adefovir inhibits the transportation of Ketoprofen by SLC22A6 (IC50 = 0.9 microM) [2]

Affected Drug/Substrate

Ketoprofen Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation3

Adefovir inhibits the transportation of Naproxen by SLC22A6 (IC50 = 1.8 microM) [2]

Affected Drug/Substrate

Naproxen Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Salicylic Acid

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Salicylic acid inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 280 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Salicylic acid inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 325 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Diclofenac

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Diclofenac inhibits the transportation of Adefovir by SLC22A6 (IC50 = 4 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Diclofenac inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 4.46 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Ibuprofen

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ibuprofen inhibits the transportation of Adefovir by SLC22A6 (IC50 = 8 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Ibuprofen inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 55.6 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation3

Ibuprofen results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

SLC22A6 protein results in increased uptake of Ibuprofen [15]

Regulation Mechanism

Transcription Factor Info

  Naproxen

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Naproxen inhibits the transportation of Adefovir by SLC22A6 (IC50 = 5.8 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Naproxen inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 5.67 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Chlorothiazide

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Chlorothiazide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 3.78 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Chlorothiazide inhibits the activity of SLC22A6 [23]

  Cyclothiazide

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cyclothiazide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 84.3 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Cyclothiazide inhibits the activity of SLC22A6 [23]

  Furosemide

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Furosemide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 18 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Furosemide inhibits the activity of SLC22A6 [18]

  Hydrochlorothiazide

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Hydrochlorothiazide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 67.3 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Hydrochlorothiazide inhibits the activity of SLC22A6 (Ki = 150 microM) [23]

  Rifampicin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Rifampicin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 79.1 microM) [20]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Oocytes-OAT1

  DT Modulation2

Rifampicin inhibits the transportation of Olmesartan medoxomil by SLC22A6 (Ki = 62.2 microM) [20]

Affected Drug/Substrate

Olmesartan medoxomil Modulation Type Inhibition

Cell System

Oocytes-OAT1

  Cephradine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cephradine inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 1600 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Cidofovir

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cidofovir inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 60 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Diflunisal

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Diflunisal inhibits the transportation of Adefovir by SLC22A6 (IC50 = 0.85 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Etodolac

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Etodolac inhibits the transportation of Adefovir by SLC22A6 (IC50 = 50 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Flurbiprofen

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Flurbiprofen inhibits the transportation of Adefovir by SLC22A6 (IC50 = 1.5 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Cilastatin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cilastatin inhibits the transportation of Aminohippuric acid by SLC22A6 (Ki = 1470 microM) [4]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Cilastatin inhibits the uptake of diclofenac acyl glucuronide by SLC22A6 [36]

Affected Drug/Substrate

Diclofenac acyl glucuronide Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Acetazolamide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acetazolamide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 75 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Bumetanide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Bumetanide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 7.6 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Ethacrynic Acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ethacrynic acid inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 29.6 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Methazolamide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Methazolamide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 438 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Trichlormethiazide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Trichloromethiazide inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 19.2 microM) [19]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Novobiocin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Novobiocin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 34.8 microM; Ki = 14.9 microM) [26]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Monkey kidney tissue Fibroblast-like cell lines (COS)7-OAT1

  Aspirin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Aspirin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 769 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Aspirin results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  Mefenamic Acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Mefenamic acid inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 0.83 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Sulindac

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Sulindac inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 36.2 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Fluvastatin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Fluvastatin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 26.3 microM) [17]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Pravastatin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Pravastatin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 408 microM) [17]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Ketoconazole

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ketoconazole inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 319 microM) [20]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Oocytes-OAT1

  Sulfasalazine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Sulfasalazine inhibits the transportation of Methotrexate by SLC22A6 (IC50 = 4.6 microM) [5]

Affected Drug/Substrate

Methotrexate Modulation Type Inhibition

Cell System

Oocytes-OAT1

  Cefadroxil

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefadroxil inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 6140 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cefamandole

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefamandole inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 30 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cefazolin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefazolin inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 180 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cefoperazone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefoperazone inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 210 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cefotaxime

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefotaxime inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 3130 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Ceftriaxone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ceftriaxone inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 230 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cephalothin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cephalothin inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 220 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Candesartan

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Candesartan inhibits the transportation of Uric acid by SLC22A6 (IC50 = 17 microM) [30]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Losartan

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Losartan inhibits the transportation of Uric acid by SLC22A6 (IC50 = 12 microM) [30]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Olmesartan medoxomil

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Olmesartan medoxomil inhibits the transportation of Uric acid by SLC22A6 (IC50 = 0.28 microM) [30]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Telmisartan

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Telmisartan inhibits the transportation of Uric acid by SLC22A6 (IC50 = 0.46 microM) [30]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Valsartan

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Valsartan inhibits the transportation of Uric acid by SLC22A6 (IC50 = 16 microM) [30]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Doxycycline

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Doxycycline inhibits the transportation of Aminohippuric acid by SLC22A6 [33]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Minocycline

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Minocycline inhibits the transportation of Aminohippuric acid by SLC22A6 [33]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Oxytetracycline

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Oxytetracycline inhibits the transportation of Aminohippuric acid by SLC22A6 [33]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Fluorescein

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Fluorescein inhibits the transportation of Aminohippuric acid by SLC22A6 [18]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human cervical cancer cell line (Hela)-OAT1

  Caspofungin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Caspofungin inhibits the transportation of Aminohippuric acid by SLC22A6 [34]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human cervical cancer cell line (Hela)-OAT1

  Linagliptin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Linagliptin inhibits the transportation of Aminohippuric acid by SLC22A6 [9]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Imipenem

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Imipenem significantly inhibits the uptake of cilastatin by SLC22A6 [35]

Affected Drug/Substrate

Cilastatin Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Phenylbutazone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Phenylbutazone inhibits the transportation of Methotrexate by SLC22A6 [37]

Affected Drug/Substrate

Methotrexate Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cinoxacin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cinoxacin inhibits the transportation of P-aminohippuric acid by SLC22A6 [40]

Affected Drug/Substrate

P-aminohippuric acid Modulation Type Inhibition

  Quercetin

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Quercetin inhibits the transportation of Para-aminohippuric acid by SLC22A6 [31]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

  Bendroflumethiazide

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Bendroflumethiazide inhibits the transportation of Polycyclic aromatic hydrocarbons by SLC22A6 [41]

Affected Drug/Substrate

Polycyclic aromatic hydrocarbons Modulation Type Inhibition

  Piperacillin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Piperacillin inhibits the transporation of tazobactam by SLC22A6 (IC50 = 54.32 microM; Ki = 37 microM) [43]

Affected Drug/Substrate

Tazobactam Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)

  Acetaminophen

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Acetaminophen inhibits the expression of SLC22A6 [44]

  DT Modulation2

Acetaminophen results in decreased activity of SLC22A6 protein [15]

Regulation Mechanism

Transcription Factor Info

  Cefaclor

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cefaclor inhibits the activity of SLC22A6 [46]

  Amoxicillin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Amoxicillin inhibits the activity of SLC22A6 [47]

  Cimetidine

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cimetidine inhibits the activity of SLC22A6 [11]

  Lumiracoxib

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Lumiracoxib inhibits the activity of SLC22A6 [48]

  Vancomycin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Vancomycin inhibits the activity of SLC22A6 [49]

  Selexipag

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Selexipag inhibits the activity of SLC22A6 [50]

  Eetuximab

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Eetuximab inhibits the activity of SLC22A6 [51]

Drug Marketed but not Approved by US FDA

  Linoleic Acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Linoleic Acid inhibits the activity of SLC22A6 [45]

Drug in Phase 3 Trial

  Benzylpenicillin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Benzylpenicillin inhibits the transportation of Aminohippuric acid by SLC22A6 [24]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Oocytes-OAT1

  DT Modulation2

Benzylpenicillin inhibits the transportation of Ochratoxin A by SLC22A6 [8]

Affected Drug/Substrate

Ochratoxin A Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Pratosartan

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Pratosartan inhibits the transportation of Uric acid by SLC22A6 (IC50 = 1.5 microM) [30]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

Drug in Phase 1/2 Trial

  PRI-724

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

PRI-724 inhibits the activity of SLC22A6 [52]

Cell System

Human embryonic kidney 293 cells (HEK293)-

Drug in Phase 1 Trial

  FT-0755769

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

FT-0755769 increases the activity of SLC22A6 [53]

Drug in Preclinical Test

  Emodin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Emodin inhibits the activity of SLC22A6 [45]

Discontinued Drug

  Cyclic cidofovir

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cyclic cidofovir inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 1100 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

Investigative Drug

  Aminohippuric acid

           5 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Aminohippuric acid inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 8.8 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Aminohippuric acid inhibits the transportation of Bestatin by SLC22A6 (IC50 = 106 microM; Ki = 92 microM) [12]

Affected Drug/Substrate

Bestatin Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  DT Modulation3

Aminohippuric acid inhibits the transportation of Ochratoxin A by SLC22A6 (Ki = 6.02 microM) [8]

Affected Drug/Substrate

Ochratoxin A Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation4

Aminohippuric acid inhibits the transportation of Uric acid by SLC22A6 (IC50 = 127 microM) [13]

Affected Drug/Substrate

Uric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation5

Aminohippuric acid inhibits the activity of SLC22A6 [14]

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Glutarate

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Glutarate inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 4.9 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Glutarate inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 3.3 microM) [21]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Adipate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Adipate inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 6.2 microM) [21]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Alpha-ketoglutaric acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Alpha-ketoglutaric acid inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 4.7 microM) [21]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Fumarate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Fumarate inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 1733 microM) [21]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Morin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Morin inhibits the transportation of Para-aminohippuric acid by SLC22A6 (IC50 = 0.3 microM) [31]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

  21H7

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

21H7 inhibits the activity of SLC22A6 [52]

Cell System

Human embryonic kidney 293 cells (HEK293)-

  FH535

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

FH535 inhibits the activity of SLC22A6 [52]

Cell System

Human embryonic kidney 293 cells (HEK293)-

  p-aminohippurate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

p-aminohippurate inhibits the uptake of imipenem by SLC22A6 [35]

Affected Drug/Substrate

Imipenem Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  JBP485

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

JBP485 inhibits the uptake of imipenem by SLC22A6 [94]

Affected Drug/Substrate

Imipenem Modulation Type Inhibition

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

Drug Withdrawn

  Cephaloridine

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cephaloridine inhibits the transportation of 6-Carboxyfluorescein by SLC22A6 (IC50 = 1250 microM) [1]

Affected Drug/Substrate

6-Carboxyfluorescein Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Cephaloridine inhibits the transportation of Prostaglandin F2alpha by SLC22A6 (Ki = 740 microM) [22]

Affected Drug/Substrate

Prostaglandin F2alpha Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Phenacetin

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Phenacetin inhibits the transportation of Adefovir by SLC22A6 (IC50 = 200 microM) [2]

Affected Drug/Substrate

Adefovir Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  DT Modulation2

Phenacetin inhibits the transportation of Aminohippuric acid by SLC22A6 (IC50 = 275 microM) [15]

Affected Drug/Substrate

Aminohippuric acid Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

Natural Product

  Citreoverdine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Citreoverdine inhibits the transportation of Organic anion by SLC22A6 (IC50 = 16.9 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Cyclopiazonic acid

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cyclopiazonic acid inhibits the transportation of Organic anion by SLC22A6 (IC50 = 6.59 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Fumonisin B1

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Fumonisin B1 inhibits the transportation of Organic anion by SLC22A6 (IC50 = 768 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Patulin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Patulin inhibits the transportation of Organic anion by SLC22A6 (IC50 = 44.8 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Gallic Acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Gallic acid inhibits the transportation of P-aminohippuric acid by SLC22A6 (IC50 = 1.2 microM) [28]

Affected Drug/Substrate

P-aminohippuric acid Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Rosmarinic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Rosmarinic acid inhibits the transportation of P-aminohippuric acid by SLC22A6 (Ki = 0.35 microM) [28]

Affected Drug/Substrate

P-aminohippuric acid Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Rhein

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Rhubarb inhibits the transportation of P-aminohippuric acid by SLC22A6 in a competitive manner (IC50 = 0.072 microM) [29]

Affected Drug/Substrate

P-aminohippuric acid Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

  Luteolin

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Luteolin inhibits the transportation of Para-aminohippuric acid by SLC22A6 (IC50 = 0.47 microM) [31]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

  Quercetin-3-O-sulfate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Quercetin-3-O-sulfate inhibits the transportation of Para-aminohippuric acid by SLC22A6 (IC50 = 1.22 microM) [32]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

  Ellagic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Ellagic acid inhibits the transportation of Para-aminohippuric acid by SLC22A6 [38]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

Cell System

Xenopus laevis oocytes-OAT1

  Silybin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Silybin inhibits the transportation of Para-aminohippuric acid by SLC22A6 in a competitive manner [39]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

Cell System

Madin darby canine kidney strain cell line (MDCK)-OAT1

  DT Modulation1

Quercetin inhibits the reaction SLC22A6 protein results in increased susceptibility to 9-((2-phosphonylmethoxy)ethyl)guanine analog [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Quercetin inhibits the reaction SLC22A6 protein results in increased susceptibility to N(6)-cyclopropyl-9-(2-phosphonylmethoxyethyl)-2,6-diaminopurine [64]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Quercetin inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [86]

Regulation Mechanism

Transcription Factor Info

  DT Modulation4

Quercetin results in decreased activity of SLC22A6 protein [56]

Regulation Mechanism

Transcription Factor Info

  Fisetin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Fisetin inhibits the transportation of Para-aminohippuric acid by SLC22A6 through competitive inhibition [31]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

  Genistein-4-O-sulfate

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Genistein-4-O-sulfate inhibits the transportation of Para-aminohippuric acid by SLC22A6 [32]

Affected Drug/Substrate

Para-aminohippuric acid Modulation Type Inhibition

  Cigarette smoke condensate (0.08mg/ml)

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cigarette smoke condensate (0.08mg/ml) inhibits the activity of SLC22A6 [42]

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Cigarette smoke condensate (0.32mg/ml)

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Cigarette smoke condensate (0.32mg/ml) inhibits the activity of SLC22A6 [42]

Cell System

Human embryonic kidney 293 cells (HEK293)-OAT1

  Tobacco Smoke Pollution

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Tobacco Smoke Pollution inhibits the activity of SLC22A6 [42]

  Chrysophanic acid

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Chrysophanic acid inhibits the activity of SLC22A6 [45]

  Baicalein

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Baicalein inhibits the activity of SLC22A6 [56]

  Wogonin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Wogonin inhibits the activity of SLC22A6 [56]

  Oroxylin A

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Oroxylin A inhibits the activity of SLC22A6 (IC50 = 0.961 microM) [57]

Cell System

Human embryonic kidney 293 cells (HEK293)-SLC22A6

  Resveratrol

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Plant Extracts co-treated with Resveratrol results in decreased expression of SLC22A6 mRNA [91]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

Resveratrol inhibits the reaction SLC22A6 protein results in increased uptake of Methotrexate [81]

Regulation Mechanism

Transcription Factor Info

  DT Modulation3

Resveratrol inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [81]

Regulation Mechanism

Transcription Factor Info

Dietary Constituent

  Danshen

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Danshen inhibits the transportation of P-aminohippuric acid by SLC22A6 (Ki = 40.4 microM) [28]

Affected Drug/Substrate

P-aminohippuric acid Modulation Type Inhibition

Cell System

Chinese hamster ovary (CHO) cells-OAT1

Mycotoxins

  DT Modulation1

Cyclopiazonic acid inhibits the transportation of Organic anion by SLC22A6 (IC50 = 6.59 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation1

Fumonisin B1 inhibits the transportation of Organic anion by SLC22A6 (IC50 = 768 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation1

Patulin inhibits the transportation of Organic anion by SLC22A6 (IC50 = 44.8 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Aflatoxin B1

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Aflatoxin B1 inhibits the transportation of Organic anion by SLC22A6 (IC50 = 12.3 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  DT Modulation2

Aflatoxin B1 results in decreased methylation of SLC22A6 5' UTR [69]

Regulation Mechanism

Transcription Factor Info

  Alpha-zearalenol

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Alpha-zearalenol inhibits the transportation of Organic anion by SLC22A6 (IC50 = 28.4 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Citrioveridine

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Citrioveridine inhibits the transportation of Organic anion by SLC22A6 (IC50 = 16.9 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Gliotoxin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Gliotoxin inhibits the transportation of Organic anion by SLC22A6 (IC50 = 117 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  Zearalenone

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Zearalenone inhibits the transportation of Organic anion by SLC22A6 (IC50 = 147 microM) [27]

Affected Drug/Substrate

Organic anion Modulation Type Inhibition

Cell System

The Proximal Tubule (S2) Cells-OAT1

  ochratoxin A

           2 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Chlorides promotes the reaction SLC22A6 protein results in increased uptake of ochratoxin A [53]

Regulation Mechanism

Transcription Factor Info

  DT Modulation2

SLC22A6 protein results in increased uptake of ochratoxin A [74]

Regulation Mechanism

Transcription Factor Info

Acute Toxic Substance

  2-amino-1-methyl-6-phenylimidazo(4,5-b)pyridine

           3 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

2-amino-1-methyl-6-phenylimidazo(4,5-b)pyridine inhibits the activity of SLC22A6 [42]

Carcinogen

  Benzo(a)pyrene

           4 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Benzo(a)pyrene inhibits the activity of SLC22A6 [55]

Pesticide/Insecticide

  Clothianidin

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Clothianidin inhibits the activity of SLC22A6 [54]

  Malathion

           1 DT Activity Modulations Related to This Exogenous Factor Click to Show/Hide the Full List

  DT Modulation1

Malathion inhibits the reaction SLC22A6 protein results in increased uptake of p-Aminohippuric Acid [70]

Regulation Mechanism

Transcription Factor Info
References
1 Fluorescence-based assay for the interaction of small molecules with the human renal organic anion transporter 1. Anal Biochem. 2000 Jul 15;283(1):49-55.
2 Nonsteroidal anti-inflammatory drugs efficiently reduce the transport and cytotoxicity of adefovir mediated by the human renal organic anion transporter 1. J Pharmacol Exp Ther. 2000 Oct;295(1):10-5.
3 Cytotoxicity of antiviral nucleotides adefovir and cidofovir is induced by the expression of human renal organic anion transporter 1. J Am Soc Nephrol. 2000 Mar;11(3):383-93.
4 Characterization of organic anion transport inhibitors using cells stably expressing human organic anion transporters. Eur J Pharmacol. 2001 May 11;419(2-3):113-20.
5 In vitro risk assessment of AZD9056 perpetrating a transporter-mediated drug-drug interaction with methotrexate. Eur J Pharm Sci. 2011 May 18;43(1-2):41-9.
6 Transport of the dipeptidyl peptidase-4 inhibitor sitagliptin by human organic anion transporter 3, organic anion transporting polypeptide 4C1, and multidrug resistance P-glycoprotein. J Pharmacol Exp Ther. 2007 May;321(2):673-83.
7 In vitro and in vivo assessment of renal drug transporters in the disposition of mesna and dimesna. J Clin Pharmacol. 2012 Apr;52(4):530-42.
8 Characterization of ochratoxin A transport by human organic anion transporters. Life Sci. 2001 Sep 21;69(18):2123-35.
9 Evaluation and prediction of potential drug-drug interactions of linagliptin using in vitro cell culture methods. Drug Metab Dispos. 2013 Jan;41(1):149-58.
10 Human organic anion transporters and human organic cation transporters mediate renal antiviral transport. J Pharmacol Exp Ther. 2002 Mar;300(3):918-24.
11 Characterization of the renal tubular transport of zonampanel, a novel alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid receptor antagonist, by human organic anion transporters. Drug Metab Dispos. 2004 Oct;32(10):1096-102.
12 Organic anion transporters involved in the excretion of bestatin in the kidney. Peptides. 2012 Feb;33(2):265-71.
13 Urate transport via human PAH transporter hOAT1 and its gene structure. Kidney Int. 2003 Jan;63(1):143-55.
14 Elucidation of common pharmacophores from analysis of targeted metabolites transported by the multispecific drug transporter-Organic anion transporter1 (Oat1). Bioorg Med Chem. 2011 Jun 1;19(11):3320-40.
15 Interactions of human organic anion transporters and human organic cation transporters with nonsteroidal anti-inflammatory drugs. J Pharmacol Exp Ther. 2002 Nov;303(2):534-9.
16 The contribution of organic anion transporters OAT1 and OAT3 to the renal uptake of rosuvastatin. J Pharmacol Exp Ther. 2007 Sep;322(3):1221-7.
17 Evidence for a role of human organic anion transporters in the muscular side effects of HMG-CoA reductase inhibitors. Eur J Pharmacol. 2004 Jan 12;483(2-3):133-8.
18 Cloning of the human kidney PAH transporter: narrow substrate specificity and regulation by protein kinase C. Am J Physiol. 1999 Feb;276(2):F295-303.
19 Interactions of human organic anion transporters with diuretics. J Pharmacol Exp Ther. 2004 Mar;308(3):1021-9.
20 Inhibitory effects of ketoconazole and rifampin on OAT1 and OATP1B1 transport activities: considerations on drug-drug interactions. Biopharm Drug Dispos. 2011 Apr;32(3):175-84.
21 Differential interaction of dicarboxylates with human sodium-dicarboxylate cotransporter 3 and organic anion transporters 1 and 3. Am J Physiol Renal Physiol. 2011 Nov;301(5):F1026-34.
22 Interaction of human and rat organic anion transporter 2 with various cephalosporin antibiotics. Eur J Pharmacol. 2003 Mar 28;465(1-2):1-7.
23 Interaction and transport of thiazide diuretics, loop diuretics, and acetazolamide via rat renal organic anion transporter rOAT1. J Pharmacol Exp Ther. 2000 Oct;295(1):261-5.
24 Molecular cloning and functional expression of a multispecific organic anion transporter from human kidney. Am J Physiol. 1999 Jan;276(1):F122-8.
25 Blockade of Organic Anion Transport in Humans After Treatment With the Drug Probenecid Leads to Major Metabolic Alterations in Plasma and Urine. Clin Pharmacol Ther. 2022 Sep;112(3):653-664.
26 Novobiocin is a potent inhibitor for human organic anion transporters. Drug Metab Dispos. 2009 Jun;37(6):1203-10.
27 Interactions of organic anion transporters and organic cation transporters with mycotoxins. J Pharmacol Sci. 2008 Mar;106(3):435-43.
28 Organic solute carrier 22 (SLC22) family: Potential for interactions with food, herbal/dietary supplements, endogenous compounds, and drugs. J Food Drug Anal. 2018 Apr;26(2S):S45-S60.
29 The anthraquinone drug rhein potently interferes with organic anion transporter-mediated renal elimination. Biochem Pharmacol. 2013 Oct 1;86(7):991-6.
30 Involvement of uric acid transporters in alteration of serum uric acid level by angiotensin II receptor blockers. Pharm Res. 2008 Mar;25(3):639-46.
31 Flavonoids are inhibitors of human organic anion transporter 1 (OAT1)-mediated transport. Drug Metab Dispos. 2014 Sep;42(9):1357-66.
32 Flavonoid conjugates interact with organic anion transporters (OATs) and attenuate cytotoxicity of adefovir mediated by organic anion transporter 1 (OAT1/SLC22A6). Biochem Pharmacol. 2011 Apr 1;81(7):942-9.
33 Human organic anion transporters mediate the transport of tetracycline. Jpn J Pharmacol. 2002 Jan;88(1):69-76.
34 Hepatic uptake of the novel antifungal agent caspofungin. Drug Metab Dispos. 2005 May;33(5):676-82.
35 Organic anion transporters also mediate the drug-drug interaction between imipenem and cilastatin. Asian J Pharm Sci. 2020 Mar;15(2):252-263.
36 Overcoming ABCB1-mediated multidrug resistance by transcription factor BHLHE40. Neoplasia. 2023 May;39:100891.
37 Characterization of methotrexate transport and its drug interactions with human organic anion transporters. J Pharmacol Exp Ther. 2002 Aug;302(2):666-71.
38 The dietary polyphenol ellagic acid is a potent inhibitor of hOAT1. Drug Metab Dispos. 2005 Aug;33(8):1097-100.
39 Interaction characteristics of flavonoids with human organic anion transporter 1 (hOAT1) and 3 (hOAT3). Pharmacol Res. 2007 Dec;56(6):468-73.
40 The interaction and transport of beta-lactam antibiotics with the cloned rat renal organic anion transporter 1. J Pharmacol Exp Ther. 1999 Aug;290(2):672-7.
41 Overlapping in vitro and in vivo specificities of the organic anion transporters OAT1 and OAT3 for loop and thiazide diuretics. Am J Physiol Renal Physiol. 2008 Apr;294(4):F867-73.
42 Inhibition of organic anion transporter (OAT) activity by cigarette smoke condensate. Toxicol In Vitro. 2017 Oct;44:27-35.
43 OAT1 and OAT3 also mediate the drug-drug interaction between piperacillin and tazobactam. Int J Pharm. 2018 Feb 15;537(1-2):172-182.
44 Predictive toxicology using systemic biology and liver microfluidic "on chip" approaches: application to acetaminophen injury. Toxicol Appl Pharmacol. 2012 Mar 15;259(3):270-80.
45 From the Cover: Identification of Natural Products as Inhibitors of Human Organic Anion Transporters (OAT1 and OAT3) and Their Protective Effect on Mercury-Induced Toxicity. Toxicol Sci. 2018 Feb 1;161(2):321-334.
46 Interactions of amoxicillin and cefaclor with human renal organic anion and peptide transporters. Drug Metab Dispos. 2006 Apr;34(4):547-55.
47 The anti-influenza drug oseltamivir exhibits low potential to induce pharmacokinetic drug interactions via renal secretion-correlation of in vivo and in vitro studies. Drug Metab Dispos. 2002 Jan;30(1):13-9.
48 Inhibitory effect of selective cyclooxygenase-2 inhibitor lumiracoxib on human organic anion transporters hOAT1 and hOAT3. Drug Metab Pharmacokinet. 2010;25(5):450-5.
49 JBP485 attenuates vancomycin-induced nephrotoxicity by regulating the expressions of organic anion transporter (Oat) 1, Oat3, organic cation transporter 2 (Oct2), multidrug resistance-associated protein 2 (Mrp2) and P-glycoprotein (P-gp) in rats. Toxicol Lett. 2018 Oct 1;295:195-204.
50 The metabolism and drug-drug interaction potential of the selective prostacyclin receptor agonist selexipag. Xenobiotica. 2018 Jul;48(7):704-719.
51 Cetuximab Prevents Methotrexate-Induced Cytotoxicity in Vitro through Epidermal Growth Factor Dependent Regulation of Renal Drug Transporters. Mol Pharm. 2017 Jun 5;14(6):2147-2157.
52 Impaired Transport Activity of Human Organic Anion Transporters (OATs) and Organic Anion Transporting Polypeptides (OATPs) by Wnt Inhibitors. J Pharm Sci. 2021 Feb;110(2):914-924.
53 The chloride dependence of the human organic anion transporter 1 (hOAT1) is blunted by mutation of a single amino acid. J Biol Chem. 2007 May 4;282(18):13402-9.
54 Neonicotinoid pesticides poorly interact with human drug transporters. J Biochem Mol Toxicol. 2019 Oct;33(10):e22379.
55 Involvement of aryl hydrocarbon receptor in the cytotoxicity of corannulene and its derivatives. Toxicol Lett. 2020 Mar 15;321:114-121.
56 Potent Inhibitors of Organic Anion Transporters 1 and 3 From Natural Compounds and Their Protective Effect on Aristolochic Acid Nephropathy. Toxicol Sci. 2020 Jun 1;175(2):279-291.
57 Interactions between Oroxylin A with the solute carrier transporters and ATP-binding cassette transporters: Drug transporters profile for this flavonoid. Chem Biol Interact. 2020 Jun 1;324:109097.
58 Different transport properties between famotidine and cimetidine by human renal organic ion transporters (SLC22A). Eur J Pharmacol. 2004 Oct 25;503(1-3):25-30.
59 Characterization of the uptake of organic anion transporter (OAT) 1 and OAT3 substrates by human kidney slices. J Pharmacol Exp Ther. 2007;321(1):362-9.
60 The flounder organic anion transporter fOat has sequence, function, and substrate specificity similarity to both mammalian Oat1 and Oat3. Am J Physiol Regul Integr Comp Physiol. 2006;291(6):R1773-80.
61 7-Hydroxycoumarin and its conjugated metabolites interact with organic anion transporters 1 and 3 in vitro and in vivo. Chem Biol Interact. 2025;405:111293.
62 Organic anion transporter 3 (OAT3) and renal transport of the metal chelator 2,3-dimercapto-1-propanesulfonic acid (DMPS). Can J Physiol Pharmacol. 2010;88(2):141-6.
63 Molecular evidence for an involvement of organic anion transporters (OATs) in aristolochic acid nephropathy. Toxicology. 2009;264(1-2):74-9.
64 Interactions with selected drug renal transporters and transporter-mediated cytotoxicity in antiviral agents from the group of acyclic nucleoside phosphonates. Toxicology. 2013;311(3):135-46.
65 Human renal organic anion transporter 1-dependent uptake and toxicity of mercuric-thiol conjugates in Madin-Darby canine kidney cells. Mol Pharmacol. 2003;63(3):590-6.
66 Transport of N-acetylcysteine s-conjugates of methylmercury in Madin-Darby canine kidney cells stably transfected with human isoform of organic anion transporter 1. J Pharmacol Exp Ther. 2005;314(3):1158-68.
67 Intracellular concentrations determine the cytotoxicity of adefovir, cidofovir and tenofovir. Toxicol In Vitro. 2015;29(1):251-8.
68 Homocysteine and the renal epithelial transport and toxicity of inorganic mercury: role of basolateral transporter organic anion transporter 1. J Am Soc Nephrol. 2004;15(8):2023-31.
69 Effect of aflatoxin B(1), benzo[a]pyrene, and methapyrilene on transcriptomic and epigenetic alterations in human liver HepaRG cells. Food Chem Toxicol. 2018;121:214-223.
70 Interactions of human organic anion transporter 1 (hOAT1) with substances associated with forensic toxicology. Leg Med (Tokyo). 2011 Jul;13(4):180-5.
71 Air pollution and DNA methylation alterations in lung cancer: A systematic and comparative study. Oncotarget. 2017;8(1):1369-1391.
72 Inhibition of SLC drug transporter activities by environmental bisphenols. Toxicol In Vitro. 2017 Apr;40:34-44.
73 Evaluation of cadmium-induced transcriptome alterations by three color cDNA labeling microarray analysis on a T-cell line. Toxicology. 2002;178(2):135-60.
74 Human organic anion transporter hOAT3 is a potent transporter of cephalosporin antibiotics, in comparison with hOAT1. Biochem Pharmacol. 2005 Oct 1;70(7):1104-13.
75 Transporter-dependent cytotoxicity of antiviral drugs in primary cultures of human proximal tubular cells. Toxicology. 2018;404-405:10-24.
76 The toxicity of cisplatin derives from effects on renal organic ion transporters expression and serum endogenous substance levels. Food Chem Toxicol. 2024;192:114949.
77 Interactions between cyazofamid and human drug transporters. J Biochem Mol Toxicol. 2020;34(4):e22459.
78 Interaction of 2,3-dimercapto-1-propane sulfonate with the human organic anion transporter hOAT1. J Pharmacol Exp Ther. 2001 Nov;299(2):741-7.
79 Polymorphisms in genes encoding potential mercury transporters and urine mercury concentrations in populations exposed to mercury vapor from gold mining. Environ Health Perspect. 2013;121(1):85-91.
80 Genetic Polymorphisms in Multispecific Transporters Mitigate Mercury Nephrotoxicity in an Artisanal and Small-Scale Gold Mining Community in Colombia. Toxicol Sci. 2020;178(2):338-346.
81 P-gp, MRP2 and OAT1/OAT3 mediate the drug-drug interaction between resveratrol and methotrexate. Toxicol Appl Pharmacol. 2016;306:27-35.
82 Interaction between rhein acyl glucuronide and methotrexate based on human organic anion transporters. Chem Biol Interact. 2017;277:79-84.
83 Handling of the homocysteine S-conjugate of methylmercury by renal epithelial cells: role of organic anion transporter 1 and amino acid transporters. J Pharmacol Exp Ther. 2005;315(2):896-904.
84 Handling of cysteine S-conjugates of methylmercury in MDCK cells expressing human OAT1. Kidney Int. 2005;68(4):1684-99.
85 Human organic anion transporter 1 mediates cellular uptake of cysteine-S conjugates of inorganic mercury. Kidney Int. 2004;66(1):251-61.
86 Allopurinol, rutin, and quercetin attenuate hyperuricemia and renal dysfunction in rats induced by fructose intake: renal organic ion transporter involvement. Am J Physiol Renal Physiol. 2009;297(4):F1080-91.
87 Lack of efflux of diglycolic acid from proximal tubule cells leads to its accumulation and to toxicity of diethylene glycol. Toxicol Lett. 2023;379:48-55.
88 In vitro and in silico characterization of the transport of selected perfluoroalkyl carboxylic acids and perfluoroalkyl sulfonic acids by human organic anion transporter 1 (OAT1), OAT2 and OAT3. Toxicology. 2024;509:153961.
89 Identification of a substrate of the renal tubular transporters for detecting drug-induced early acute kidney injury. Toxicol Sci. 2024;201(2):190-205.
90 A species difference in the transport activities of H2 receptor antagonists by rat and human renal organic anion and cation transporters. J Pharmacol Exp Ther. 2005 Oct;315(1):337-45.
91 One-year supplementation with a grape extract containing resveratrol modulates inflammatory-related microRNAs and cytokines expression in peripheral blood mononuclear cells of type 2 diabetes and hypertensive patients with coronary artery disease. Pharmacol Res. 2013;72:69-82.
92 Microarray dataset of transient and permanent DNA methylation changes in HeLa cells undergoing inorganic arsenic-mediated epithelial-to-mesenchymal transition. Data Brief. 2017;13:6-9.
93 High-Throughput Transcriptomics of Nontumorigenic Breast Cells Exposed to Environmentally Relevant Chemicals. Environ Health Perspect. 2024;132(4):47002.
94 JBP485, A Dual Inhibitor of Organic Anion Transporters (OATs) and Renal Dehydropeptidase-I (DHP-I), Protects Against Imipenem-Induced Nephrotoxicity. Front Pharmacol. 2022 Jun 8;13:938813.

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