TMC278, a next-generation nonnucleoside reverse transcriptase inhibitor (NNRTI), active against wild-type and NNRTI-resistant HIV-1. 2010

Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
Tibotec-Virco BVBA, Generaal de Wittelaan L11 B3, B-2800 Mechelen, Belgium.

Nonnucleoside reverse transcriptase inhibitors (NNRTIs) have proven efficacy against human immunodeficiency virus type 1 (HIV-1). However, in the setting of incomplete viral suppression, efavirenz and nevirapine select for resistant viruses. The diarylpyrimidine etravirine has demonstrated durable efficacy for patients infected with NNRTI-resistant HIV-1. A screening strategy used to test NNRTI candidates from the same series as etravirine identified TMC278 (rilpivirine). TMC278 is an NNRTI showing subnanomolar 50% effective concentrations (EC50 values) against wild-type HIV-1 group M isolates (0.07 to 1.01 nM) and nanomolar EC50 values against group O isolates (2.88 to 8.45 nM). Sensitivity to TMC278 was not affected by the presence of most single NNRTI resistance-associated mutations (RAMs), including those at positions 100, 103, 106, 138, 179, 188, 190, 221, 230, and 236. The HIV-1 site-directed mutant with Y181C was sensitive to TMC278, whereas that with K101P or Y181I/V was resistant. In vitro, considerable cross-resistance between TMC278 and etravirine was observed. Sensitivity to TMC278 was observed for 62% of efavirenz- and/or nevirapine-resistant HIV-1 recombinant clinical isolates. TMC278 inhibited viral replication at concentrations at which first-generation NNRTIs could not suppress replication. The rates of selection of TMC278-resistant strains were comparable among HIV-1 group M subtypes. NNRTI RAMs emerging in HIV-1 under selective pressure from TMC278 included combinations of V90I, L100I, K101E, V106A/I, V108I, E138G/K/Q/R, V179F/I, Y181C/I, V189I, G190E, H221Y, F227C, and M230I/L. E138R was identified as a new NNRTI RAM. These in vitro analyses demonstrate that TMC278 is a potent next-generation NNRTI, with a high genetic barrier to resistance development.

UI MeSH Term Description Entries
D009570 Nitriles Organic compounds containing the -CN radical. The concept is distinguished from CYANIDES, which denotes inorganic salts of HYDROGEN CYANIDE. Nitrile
D011724 Pyridazines Six-membered rings with two adjacent nitrogen atoms also called 1,2-diazine.
D011743 Pyrimidines A family of 6-membered heterocyclic compounds occurring in nature in a wide variety of forms. They include several nucleic acid constituents (CYTOSINE; THYMINE; and URACIL) and form the basic structure of the barbiturates.
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.
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000068696 Rilpivirine A diarylpyrimidine derivative and REVERSE TRANSCRIPTASE INHIBITOR with antiviral activity against HIV-1 that is used in the treatment of HIV INFECTIONS. It is also used in combination with other ANTI-HIV AGENTS, since ANTIVIRAL DRUG RESISTANCE emerges rapidly when it is used alone. R278474,Rilpivirine HCl,Rilpivirine Hydrochloride,TMC 278,TMC-278,TMC278,278, TMC,HCl, Rilpivirine,Hydrochloride, Rilpivirine
D000480 Alkynes Hydrocarbons with at least one triple bond in the linear portion, of the general formula Cn-H2n-2. Acetylenic Compounds,Alkyne,Acetylenes
D015394 Molecular Structure The location of the atoms, groups or ions relative to one another in a molecule, as well as the number, type and location of covalent bonds. Structure, Molecular,Molecular Structures,Structures, Molecular

Related Publications

Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
April 2009, Clinical therapeutics,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
December 2004, Antimicrobial agents and chemotherapy,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
May 2006, Journal of virology,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
April 2009, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
July 2004, Proceedings of the National Academy of Sciences of the United States of America,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
February 2008, Proceedings of the National Academy of Sciences of the United States of America,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
January 2002, HIV clinical trials,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
October 2010, Antimicrobial agents and chemotherapy,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
May 2012, Antimicrobial agents and chemotherapy,
Hilde Azijn, and Ilse Tirry, and Johan Vingerhoets, and Marie-Pierre de Béthune, and Guenter Kraus, and Katia Boven, and Dirk Jochmans, and Elke Van Craenenbroeck, and Gaston Picchio, and Laurence T Rimsky
May 1993, Antimicrobial agents and chemotherapy,
Copied contents to your clipboard!