Human immunodeficiency virus type 1 resistance or cross-resistance to nonnucleoside reverse transcriptase inhibitors currently under development as microbicides. 2011

Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
Department of Microbiology, Virology Unit, Institute of Tropical Medicine, Nationalestraat 155, B-2000 Antwerp, Belgium. pselhorst@itg.be

Microbicides based on nonnucleoside reverse transcriptase inhibitors (NNRTIs) are currently being developed to protect women from HIV acquisition through sexual contact. However, the large-scale introduction of these products raises two major concerns. First, when these microbicides are used by undiagnosed HIV-positive women, they could potentially select for viral resistance, which may compromise subsequent therapeutic options. Second, NNRTI-based microbicides that are inactive against NNRTI-resistant strains might promote the selective transmission of these viruses. In order to address these concerns, drug resistance was selected in vitro by the serial passage of three viral isolates from subtypes B and C and CRF02_AG (a circulating recombinant form) in activated peripheral blood mononuclear cells (PBMCs) under conditions of increasing concentrations of three NNRTIs (i.e., TMC120, UC781, and MIV-160) that are currently being developed as candidate microbicides. TMC120 and MIV-160 displayed a high genetic barrier to resistance development, whereas resistance to UC781 emerged rapidly, similarly to efavirenz and nevirapine. Phenotypically, the selected viruses appeared to be highly cross-resistant to current first-line therapeutic NNRTIs (i.e., delavirdine, nevirapine, and efavirenz), although they retained some susceptibility to the more recently developed NNRTIs lersivirine and etravirine. The ability of UC781, TMC120, and MIV-160 to inhibit the in vitro-selected NNRTI-resistant viruses was also limited, although residual activity could be observed for the candidate microbicide NNRTI MIV-170. Interestingly, only four p2/p7/p1/p6/PR/RT/INT recombinant NNRTI-resistant viruses (i.e., TMC120-resistant VI829, EFV-resistant VI829, MIV-160-resistant VI829, and EFV-resistant MP568) showed impairments in replicative fitness. Overall, these in vitro analyses demonstrate that due to potential cross-resistance, the large-scale introduction of single-NNRTI-based microbicides should be considered with caution.

UI MeSH Term Description Entries
D002460 Cell Line Established cell cultures that have the potential to propagate indefinitely. Cell Lines,Line, Cell,Lines, Cell
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D003521 Cyclopropanes Three-carbon cycloparaffin cyclopropane (the structural formula (CH2)3) and its derivatives.
D005663 Furans Compounds with a 5-membered ring of four carbons and an oxygen. They are aromatic heterocycles. The reduced form is tetrahydrofuran. Tetrahydrofurans
D005838 Genotype The genetic constitution of the individual, comprising the ALLELES present at each GENETIC LOCUS. Genogroup,Genogroups,Genotypes
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000480 Alkynes Hydrocarbons with at least one triple bond in the linear portion, of the general formula Cn-H2n-2. Acetylenic Compounds,Alkyne,Acetylenes
D000813 Anilides Any aromatic amide obtained by acylation of aniline.
D000890 Anti-Infective Agents Substances that prevent infectious agents or organisms from spreading or kill infectious agents in order to prevent the spread of infection. Anti-Infective Agent,Anti-Microbial Agent,Antimicrobial Agent,Microbicide,Microbicides,Anti-Microbial Agents,Antiinfective Agents,Antimicrobial Agents,Agent, Anti-Infective,Agent, Anti-Microbial,Agent, Antimicrobial,Agents, Anti-Infective,Agents, Anti-Microbial,Agents, Antiinfective,Agents, Antimicrobial,Anti Infective Agent,Anti Infective Agents,Anti Microbial Agent,Anti Microbial Agents
D013844 Thiazoles Heterocyclic compounds where the ring system is composed of three CARBON atoms, a SULFUR and NITROGEN atoms. Thiazole

Related Publications

Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
December 1998, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
January 2006, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
September 1994, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
August 2006, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
January 2004, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
February 2007, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
August 1993, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
October 1991, Proceedings of the National Academy of Sciences of the United States of America,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
December 1992, Antimicrobial agents and chemotherapy,
Philippe Selhorst, and Ana C Vazquez, and Katty Terrazas-Aranda, and Johan Michiels, and Katleen Vereecken, and Leo Heyndrickx, and Jan Weber, and Miguel E Quiñones-Mateu, and Kevin K Ariën, and Guido Vanham
January 1996, Biochemistry,
Copied contents to your clipboard!