In vivo analysis of efavirenz metabolism in individuals with impaired CYP2A6 function.


Autoria(s): di Iulio J.; Fayet A.; Arab-Alameddine M.; Rotger M.; Lubomirov R.; Cavassini M.; Furrer H.; Günthard H.F.; Colombo S.; Csajka C.; Eap C.B.; Decosterd L.A.; Telenti A.; Swiss HIV Cohort Study
Data(s)

2009

Resumo

INTRODUCTION: The antiretroviral drug efavirenz (EFV) is extensively metabolized into three primary metabolites: 8-hydroxy-EFV, 7-hydroxy-EFV and N-glucuronide-EFV. There is a wide interindividual variability in EFV plasma exposure, explained to a great extent by cytochrome P450 2B6 (CYP2B6), the main isoenzyme responsible for EFV metabolism and involved in the major metabolic pathway (8-hydroxylation) and to a lesser extent in 7-hydroxylation. When CYP2B6 function is impaired, the relevance of CYP2A6, the main isoenzyme responsible for 7-hydroxylation may increase. We hypothesize that genetic variability in this gene may contribute to the particularly high, unexplained variability in EFV exposure in individuals with limited CYP2B6 function. METHODS: This study characterized CYP2A6 variation (14 alleles) in individuals (N=169) previously characterized for functional variants in CYP2B6 (18 alleles). Plasma concentrations of EFV and its primary metabolites (8-hydroxy-EFV, 7-hydroxy-EFV and N-glucuronide-EFV) were measured in different genetic backgrounds in vivo. RESULTS: The accessory metabolic pathway CYP2A6 has a critical role in limiting drug accumulation in individuals characterized as CYP2B6 slow metabolizers. CONCLUSION: Dual CYP2B6 and CYP2A6 slow metabolism occurs at significant frequency in various human populations, leading to extremely high EFV exposure.

Identificador

http://serval.unil.ch/?id=serval:BIB_69748BF486BC

isbn:1744-6872 (Print)

pmid:19238117

doi:10.1097/FPC.0b013e328328d577

isiid:000264943900006

Idioma(s)

en

Fonte

Pharmacogenetics and Genomics, vol. 19, no. 4, pp. 300-309

Palavras-Chave #African Continental Ancestry Group/genetics; Alleles; Anti-HIV Agents/blood; Anti-HIV Agents/chemistry; Aryl Hydrocarbon Hydroxylases/metabolism; Asian Continental Ancestry Group/genetics; Benzoxazines/blood; Benzoxazines/chemistry; European Continental Ancestry Group/genetics; Gene Frequency; Genetic Variation; Hispanic Americans/genetics; Humans; Metabolic Networks and Pathways/genetics; Molecular Structure; Pharmacogenetics; Polymorphism, Single Nucleotide
Tipo

info:eu-repo/semantics/article

article