Literature DB >> 11265000

International perspectives on antiretroviral resistance. Resistance to protease inhibitors.

V Miller1.   

Abstract

The availability of protease inhibitors (PIs) and their combination with nucleoside reverse transcriptase inhibitors marked the passage of antiretroviral therapy (ART) from potential for control to effective suppression and thus substantially reduced rates of morbidity and mortality related to HIV. Even so, what was first hoped to be an immutable HIV DNA treatment target has proved to be prone to resistance mutations, with substitutions identified at more than 20 amino acid sites, which reduces PI susceptibility and increases resistance to treatment. The mutation patterns associated with each PI have been defined, and have been observed to occur at one of two locations: at or near the active site, or in the substrate cleavage site. The natural history of PI resistance has been extensively studied, and the genetic and cellular pathways are described in detail in this article. In addition, cross-resistance among PIs is now recognized to be fairly extensive, although the degree of cross-resistance varies with the number of mutations and the variants selected by drug pressure. Thus, it is still possible to salvage a response with another PI after a first regimen with another PI has failed. The extensive basic science and clinical experience with PIs in the fight against HIV are reviewed in this article, which provides data on resistance-mutation profiles, cellular resistance mechanisms, viral fitness studies, and clinical outcome trials with various first-line and subsequent regimens that contain PIs. It is hoped that the information provided will guide physicians in best using PIs as part of a logical and successful ART strategy.

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Year:  2001        PMID: 11265000     DOI: 10.1097/00042560-200103011-00005

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


  26 in total

1.  Extent of cross-resistance between agents used to treat human immunodeficiency virus type 1 infection in clinically derived isolates.

Authors:  P Richard Harrigan; Brendan A Larder
Journal:  Antimicrob Agents Chemother       Date:  2002-03       Impact factor: 5.191

2.  Evolution of two amino acid positions governing broad neutralization resistance in a strain of feline immunodeficiency virus over 7 years of persistence in cats.

Authors:  Mauro Pistello; Donatella Matteucci; Simone Giannecchini; Francesca Bonci; Olimpia Sichi; Silvano Presciuttini; Mauro Bendinelli
Journal:  Clin Diagn Lab Immunol       Date:  2003-11

Review 3.  HIV sequence databases.

Authors:  Carla Kuiken; Bette Korber; Robert W Shafer
Journal:  AIDS Rev       Date:  2003 Jan-Mar       Impact factor: 2.500

4.  A Guide to HIV-1 Reverse Transcriptase and Protease Sequencing for Drug Resistance Studies.

Authors:  Robert W Shafer; Kathryn Dupnik; Mark A Winters; Susan H Eshleman
Journal:  HIV Seq Compend       Date:  2001

5.  Natural polymorphisms in the human immunodeficiency virus type 2 protease can accelerate time to development of resistance to protease inhibitors.

Authors:  Michel Ntemgwa; Bluma G Brenner; Maureen Oliveira; Daniela Moisi; Mark A Wainberg
Journal:  Antimicrob Agents Chemother       Date:  2006-11-20       Impact factor: 5.191

Review 6.  Targeting protein-protein interactions by rational design: mimicry of protein surfaces.

Authors:  Steven Fletcher; Andrew D Hamilton
Journal:  J R Soc Interface       Date:  2006-04-22       Impact factor: 4.118

Review 7.  Antiretroviral drug resistance in human immunodeficiency virus type 2.

Authors:  Michel L Ntemgwa; Thomas d'Aquin Toni; Bluma G Brenner; Ricardo J Camacho; Mark A Wainberg
Journal:  Antimicrob Agents Chemother       Date:  2009-05-26       Impact factor: 5.191

8.  Novel P2 tris-tetrahydrofuran group in antiviral compound 1 (GRL-0519) fills the S2 binding pocket of selected mutants of HIV-1 protease.

Authors:  Hongmei Zhang; Yuan-Fang Wang; Chen-Hsiang Shen; Johnson Agniswamy; Kalapala Venkateswara Rao; Chun-Xiao Xu; Arun K Ghosh; Robert W Harrison; Irene T Weber
Journal:  J Med Chem       Date:  2013-01-23       Impact factor: 7.446

9.  Efavirenz therapy in rhesus macaques infected with a chimera of simian immunodeficiency virus containing reverse transcriptase from human immunodeficiency virus type 1.

Authors:  Michael J Hofman; Joanne Higgins; Timothy B Matthews; Niels C Pedersen; Chalet Tan; Raymond F Schinazi; Thomas W North
Journal:  Antimicrob Agents Chemother       Date:  2004-09       Impact factor: 5.191

Review 10.  Resilience to resistance of HIV-1 protease inhibitors: profile of darunavir.

Authors:  Eric Lefebvre; Celia A Schiffer
Journal:  AIDS Rev       Date:  2008 Jul-Sep       Impact factor: 2.500

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