Literature DB >> 16791115

Pharmacogenetic characteristics of indinavir, zidovudine, and lamivudine therapy in HIV-infected adults: a pilot study.

Peter L Anderson1, Jatinder Lamba, Christina L Aquilante, Erin Schuetz, Courtney V Fletcher.   

Abstract

OBJECTIVE: The aim of the study was to investigate relationships among indinavir, lamivudine-triphosphate, and zidovudine-triphosphate pharmacokinetics and pharmacodynamics with polymorphisms in CYP3A5, MDR1, MRP2, MRP4, BCRP, and UGT1A1 genes. STUDY
DESIGN: Retrospective pilot investigation among 33 subjects who participated in a randomized pharmacological study of indinavir, lamivudine, and zidovudine. Subjects were defined as genetic variant carriers or not. Relationships were investigated with multivariable regression. Indinavir clearance was adjusted for African American race; triphosphates for sex; and HIV-response for study arm, drug exposure, and baseline HIV-RNA.
RESULTS: Genetically determined CYP3A5 expressors had 44% faster indinavir oral clearance versus nonexpressors (P = 0.002). MRP2-24C/T variant carriers had 24% faster indinavir oral clearance (P = 0.05). Lamivudine-triphosphate concentrations were elevated 20% in MRP4 T4131G variant carriers (P = 0.004). A trend for elevated zidovudine-triphosphates was observed in MRP4 G3724A variant carriers (P = 0.06). The log10 changes in HIV-RNA from baseline to week 52 were -3.7 for MDR1 2677 TT, -3.2 for GT, and -2.2 for GG (P < 0.05). Bilirubin increases were 2-fold higher in UGT1A1 [TA]7/[TA]7 genotypes. No relationships were identified with BCRP. DISCUSSION: Novel relationships were identified among genetic variants in drug transporters and indinavir, lamivudine-triphosphate, and zidovudine-triphosphate concentrations. CYP3A5 expression was associated with faster indinavir oral clearance. These pilot data provide a scientific basis for more rational utilization of antiretroviral drugs.

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Year:  2006        PMID: 16791115     DOI: 10.1097/01.qai.0000225013.53568.69

Source DB:  PubMed          Journal:  J Acquir Immune Defic Syndr        ISSN: 1525-4135            Impact factor:   3.731


  48 in total

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Review 2.  Drug transporters in tissues and cells relevant to sexual transmission of HIV: Implications for drug delivery.

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4.  Can antiretroviral therapy be tailored to each human immunodeficiency virus-infected individual? Role of pharmacogenomics.

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5.  The impact of host pharmacogenetics on antiretroviral drug disposition.

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7.  The influence of CYP3A5 genotype on dexamethasone induction of CYP3A activity in African Americans.

Authors:  Patrick J Roberts; Kristan D Rollins; Angela D M Kashuba; Mary F Paine; Andrew C Nelsen; Eric E Williams; Cassandra Moran; Jatinder K Lamba; Erin G Schuetz; Roy L Hawke
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Review 8.  Pharmacogenomics of CYP3A: considerations for HIV treatment.

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Review 9.  Intracellular Pharmacokinetics of Antiretroviral Drugs in HIV-Infected Patients, and their Correlation with Drug Action.

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10.  Influence of pharmacogenetics on indinavir disposition and short-term response in HIV patients initiating HAART.

Authors:  Julie Bertrand; Jean-Marc Treluyer; Xavière Panhard; Agnes Tran; Solange Auleley; Elisabeth Rey; Dominique Salmon-Céron; Xavier Duval; France Mentré
Journal:  Eur J Clin Pharmacol       Date:  2009-05-14       Impact factor: 2.953

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