Hexane


Curated chemical-gene interactions from CTD
Entrez gene IDGene symbolInteraction typeReference
140809 SRXN1 Increases expression PMID:20566472
1543 CYP1A1 Increases activity PMID:28115069
1543 CYP1A1 Increases expression PMID:28115069
1544 CYP1A2 Increases activity PMID:28115069
1544 CYP1A2 Increases expression PMID:28115069
1571 CYP2E1 Increases activity PMID:28115069
1571 CYP2E1 Increases expression PMID:28115069
1583 CYP11A1 Affects expression PMID:26410608
1586 CYP17A1 Affects expression PMID:26410608
1645 AKR1C1 Increases expression PMID:20566472
1728 NQO1 Increases expression PMID:20566472
2235 FECH Increases expression PMID:20566472
22949 PTGR1 Increases expression PMID:20566472
231 AKR1B1 Increases expression PMID:20566472
23516 SLC39A14 Increases expression PMID:23353815
24300 CYP2B1 Increases activity PMID:28115069
2512 FTL Increases expression PMID:20566472
2539 G6PD Increases expression PMID:20566472
2729 GCLC Increases expression PMID:20566472
2730 GCLM Increases expression PMID:20566472
2936 GSR Increases expression PMID:20566472
30061 SLC40A1 Decreases expression PMID:23353815
3162 HMOX1 Increases expression PMID:20566472
3569 IL6 Increases expression PMID:23353815
4097 MAFG Increases expression PMID:20566472
4199 ME1 Increases expression PMID:20566472
5226 PGD Increases expression PMID:20566472
57016 AKR1B10 Increases expression PMID:20566472
581 BAX Increases expression PMID:17492505
596 BCL2 Increases expression PMID:17492505
6770 STAR Affects expression PMID:26410608
7296 TXNRD1 Increases expression PMID:20566472
836 CASP3 Increases expression PMID:17492505
8644 AKR1C3 Increases expression PMID:20566472

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We have built a comprehensive resource which compiles potential endocrine disrupting chemicals (EDCs) based on the observed adverse effects or endocrine-mediated endpoints in published experiments on humans or rodents to support basic research. We are not responsible for any errors or omissions in the published research articles or supporting literature on potential EDCs compiled in this resource. Users are advised to exercise their own judgement on the weight of evidence for potential EDCs compiled in this resource. Importantly, our sole goal to build this resource on potential EDCs is to enable future basic research towards better understanding of the systems-level perturbations upon chemical exposure rather than influencing regulatory advice on chemical use.