General Information of Drug (ID: DMGF8ZQ)

Drug Name
Velpatasvir Drug Info
Synonyms
Velpatasvir; Velpatasvir [USAN:INN]; Verpatasvir; KCU0C7RS7Z; 1377049-84-7; GS 5816; GS-5816; GS5816; UNII-KCU0C7RS7Z; methyl {(2S)-1-[(2S,5S)-2-(9-{2-[(2S,4S)-1-{(2R)-2-[(methoxycarbonyl)amino]-2-phenylacetyl}-4-(methoxymethyl)pyrrolidin-2-yl]-1H-imidazol-4-yl}-1,11-dihydro[2]benzopyrano[4',3':6,7]naphtho[1,2-d]imidazol-2-yl)-5-methylpyrrolidin-1-yl]-3-methyl-1-oxobutan-2-yl}carbamate
Cross-matching ID
PubChem CID
67683363
ChEBI ID
CHEBI:133009
CAS Number
CAS 1377049-84-7
TTD Drug ID
DMGF8ZQ
INTEDE Drug ID
DR1676

Molecule-Related Drug Atlas

Molecule-Related Drug Atlas
Molecule Type:
DTP
DME
Drug Status:
Approved Drug(s)
Drug(s) Transported By P-glycoprotein 1 (ABCB1)
Drug Name Drug ID Indication ICD 11 Highest Status REF
Amoxicillin DMUYNEI Acute otitis media AB00 Approved [5]
Doxorubicin DMVP5YE Acute myelogenous leukaemia 2A41 Approved [6]
Methotrexate DM2TEOL Anterior urethra cancer Approved [7]
Folic Acid DMEMBJC Colorectal carcinoma Approved [8]
Fluorouracil DMUM7HZ Adenocarcinoma 2D40 Approved [7]
Cisplatin DMRHGI9 Adenocarcinoma 2D40 Approved [7]
Progesterone DMUY35B Amenorrhea GA20.0 Approved [9]
Tamoxifen DMLB0EZ Breast cancer 2C60-2C65 Approved [7]
Estradiol DMUNTE3 Acne vulgaris ED80 Approved [10]
Imatinib DM7RJXL Acute lymphoblastic leukaemia 2A85 Approved [11]
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Drug(s) Metabolized By Cytochrome P450 3A4 (CYP3A4)
Drug Name Drug ID Indication ICD 11 Highest Status REF
Doxorubicin DMVP5YE Acute myelogenous leukaemia 2A41 Approved [12]
Progesterone DMUY35B Amenorrhea GA20.0 Approved [13]
Tamoxifen DMLB0EZ Breast cancer 2C60-2C65 Approved [14]
Estradiol DMUNTE3 Acne vulgaris ED80 Approved [15]
Acetaminophen DMUIE76 Allergic rhinitis CA08.0 Approved [16]
Imatinib DM7RJXL Acute lymphoblastic leukaemia 2A85 Approved [17]
Etoposide DMNH3PG Acute myelogenous leukaemia 2A41 Approved [18]
Zidovudine DM4KI7O Human immunodeficiency virus infection 1C62 Approved [19]
Prasterone DM67VKL Chronic obstructive pulmonary disease CA22 Approved [13]
Verapamil DMA7PEW Angina pectoris BA40 Approved [20]
⏷ Show the Full List of 10 Drug(s)
Drug(s) Metabolized By Cytochrome P450 2C8 (CYP2C8)
Drug Name Drug ID Indication ICD 11 Highest Status REF
Fluorouracil DMUM7HZ Adenocarcinoma 2D40 Approved [21]
Estradiol DMUNTE3 Acne vulgaris ED80 Approved [22]
Imatinib DM7RJXL Acute lymphoblastic leukaemia 2A85 Approved [22]
Zidovudine DM4KI7O Human immunodeficiency virus infection 1C62 Approved [23]
Verapamil DMA7PEW Angina pectoris BA40 Approved [24]
Diclofenac DMPIHLS Chronic renal failure GB61.Z Approved [25]
Sorafenib DMS8IFC Adenocarcinoma 2D40 Approved [26]
Quinine DMSWYF5 Malaria 1F40-1F45 Approved [22]
Mycophenolate mofetil DMPQAGE Hepatosplenic T-cell lymphoma Approved [27]
Propofol DMB4OLE Anaesthesia 9A78.6 Approved [28]
⏷ Show the Full List of 10 Drug(s)
Drug(s) Metabolized By Cytochrome P450 2B6 (CYP2B6)
Drug Name Drug ID Indication ICD 11 Highest Status REF
Tamoxifen DMLB0EZ Breast cancer 2C60-2C65 Approved [29]
Verapamil DMA7PEW Angina pectoris BA40 Approved [23]
Diclofenac DMPIHLS Chronic renal failure GB61.Z Approved [30]
Estrone DM5T6US Acne vulgaris ED80 Approved [31]
Valproate DMCFE9I Epilepsy 8A60-8A68 Approved [32]
Irinotecan DMP6SC2 Adenocarcinoma 2D40 Approved [33]
Propofol DMB4OLE Anaesthesia 9A78.6 Approved [34]
Nicotine DMWX5CO Lung cancer 2C25.0 Approved [35]
Phenytoin DMNOKBV Epilepsy 8A60-8A68 Approved [36]
Amitriptyline DMK7F9S Depression 6A70-6A7Z Approved [37]
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Molecular Interaction Atlas of This Drug

Molecular Interaction Atlas

Drug Transporter (DTP)
DTP Name DTP ID UniProt ID MOA REF
P-glycoprotein 1 (ABCB1) DTUGYRD MDR1_HUMAN Substrate [1]

Drug-Metabolizing Enzyme (DME)
DME Name DME ID UniProt ID MOA REF
Cytochrome P450 3A4 (CYP3A4) DE4LYSA CP3A4_HUMAN Substrate [2]
Cytochrome P450 2B6 (CYP2B6) DEPKLMQ CP2B6_HUMAN Substrate [3]
Cytochrome P450 2C8 (CYP2C8) DES5XRU CP2C8_HUMAN Substrate [4]

References

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6 MDR1 (ABCB1) G1199A (Ser400Asn) polymorphism alters transepithelial permeability and sensitivity to anticancer agents. Cancer Chemother Pharmacol. 2009 Jun;64(1):183-8.
7 Mammalian drug efflux transporters of the ATP binding cassette (ABC) family in multidrug resistance: A review of the past decade. Cancer Lett. 2016 Jan 1;370(1):153-64.
8 Folate transporter expression decreases in the human placenta throughout pregnancy and in pre-eclampsia. Pregnancy Hypertens. 2012 Apr;2(2):123-31.
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10 Antiestrogens and steroid hormones: substrates of the human P-glycoprotein. Biochem Pharmacol. 1994 Jul 19;48(2):287-92.
11 Association of genetic polymorphisms in the influx transporter SLCO1B3 and the efflux transporter ABCB1 with imatinib pharmacokinetics in patients with chronic myeloid leukemia. Ther Drug Monit. 2011 Apr;33(2):244-50.
12 Expression levels and activation of a PXR variant are directly related to drug resistance in osteosarcoma cell lines. Cancer. 2007 Mar 1;109(5):957-65.
13 Contribution of human hepatic cytochrome P450 isoforms to regioselective hydroxylation of steroid hormones. Xenobiotica. 1998 Jun;28(6):539-47.
14 Comprehensive evaluation of tamoxifen sequential biotransformation by the human cytochrome P450 system in vitro: prominent roles for CYP3A and CYP2D6. J Pharmacol Exp Ther. 2004 Sep;310(3):1062-75.
15 Isoform-specific regulation of cytochromes P450 expression by estradiol and progesterone. Drug Metab Dispos. 2013 Feb;41(2):263-9.
16 Metabolic interactions between acetaminophen (paracetamol) and two flavonoids, luteolin and quercetin, through in-vitro inhibition studies. J Pharm Pharmacol. 2017 Dec;69(12):1762-1772.
17 Potent mechanism-based inhibition of CYP3A4 by imatinib explains its liability to interact with CYP3A4 substrates. Br J Pharmacol. 2012 Apr;165(8):2787-98.
18 Effects of morin on the pharmacokinetics of etoposide in rats. Biopharm Drug Dispos. 2007 Apr;28(3):151-6.
19 The metabolism of zidovudine by human liver microsomes in vitro: formation of 3'-amino-3'-deoxythymidine. Biochem Pharmacol. 1994 Jul 19;48(2):267-76.
20 Substrates, inducers, inhibitors and structure-activity relationships of human Cytochrome P450 2C9 and implications in drug development. Curr Med Chem. 2009;16(27):3480-675.
21 Roles of cytochromes P450 1A2, 2A6, and 2C8 in 5-fluorouracil formation from tegafur, an anticancer prodrug, in human liver microsomes. Drug Metab Dispos. 2000 Dec;28(12):1457-63.
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23 Summary of information on human CYP enzymes: human P450 metabolism data. Drug Metab Rev. 2002 Feb-May;34(1-2):83-448.
24 Differential expression and function of CYP2C isoforms in human intestine and liver. Pharmacogenetics. 2003 Sep;13(9):565-75.
25 Analysis of human cytochrome P450 2C8 substrate specificity using a substrate pharmacophore and site-directed mutants. Biochemistry. 2004 Dec 14;43(49):15379-92.
26 Interaction of sorafenib and cytochrome P450 isoenzymes in patients with advanced melanoma: a phase I/II pharmacokinetic interaction study. Cancer Chemother Pharmacol. 2011 Nov;68(5):1111-8.
27 PharmGKB summary: mycophenolic acid pathway. Pharmacogenet Genomics. 2014 Jan;24(1):73-9.
28 Possible involvement of multiple human cytochrome P450 isoforms in the liver metabolism of propofol. Br J Anaesth. 1998 Jun;80(6):788-95.
29 Effect of tamoxifen on the enzymatic activity of human cytochrome CYP2B6. J Pharmacol Exp Ther. 2002 Jun;301(3):945-52.
30 Hepatic metabolism of diclofenac: role of human CYP in the minor oxidative pathways. Biochem Pharmacol. 1999 Sep 1;58(5):787-96.
31 Characterization of the oxidative metabolites of 17beta-estradiol and estrone formed by 15 selectively expressed human cytochrome p450 isoforms. Endocrinology. 2003 Aug;144(8):3382-98.
32 Insights into CYP2B6-mediated drug-drug interactions. Acta Pharm Sin B. 2016 Sep;6(5):413-425.
33 Drugs that may have potential CYP2B6 interactions.
34 Involvement of human cytochrome P450 2B6 in the omega- and 4-hydroxylation of the anesthetic agent propofol. Xenobiotica. 2007 Jul;37(7):717-24.
35 Nicotine and 4-(methylnitrosamino)-1-(3-pyridyl)-butanone metabolism by cytochrome P450 2B6. Drug Metab Dispos. 2005 Dec;33(12):1760-4.
36 PharmGKB summary: phenytoin pathway. Pharmacogenet Genomics. 2012 Jun;22(6):466-70.
37 Application of the relative activity factor approach in scaling from heterologously expressed cytochromes p450 to human liver microsomes: studies on amitriptyline as a model substrate. J Pharmacol Exp Ther. 2001 Apr;297(1):326-37.