Literature DB >> 20937791

Plasma and intracellular (peripheral blood mononuclear cells) pharmacokinetics of once-daily raltegravir (800 milligrams) in HIV-infected patients.

José Moltó1, Marta Valle, David Back, Samandhy Cedeño, Victoria Watson, Neill Liptrott, Deirdre Egan, Cristina Miranda, Manuel J Barbanoj, Bonaventura Clotet.   

Abstract

The aim of this study was to evaluate the plasma and intracellular pharmacokinetics of raltegravir in HIV-infected patients receiving once-daily raltegravir. Five HIV-infected patients on stable therapy with lopinavir-ritonavir monotherapy whose HIV-1 RNA load was <50 copies/ml were included in this open-label, pilot study. Raltegravir was added to the antiretroviral regimen at a dose of 800 mg once daily from days 0 to 10. On day 10, a full pharmacokinetic profile was obtained for each participant. Raltegravir concentrations in plasma and peripheral blood mononuclear cells (PBMCs) were determined by high-performance liquid chromatography with a fluorescence detector and by liquid chromatography-tandem mass spectrometry (LC-MS/MS), respectively. The values of the raltegravir pharmacokinetic parameters in plasma and PBMCs were calculated by noncompartmental analysis. Raltegravir was well tolerated, and all participants completed the study. No differences in the times to the maximum concentration of raltegravir in plasma or the raltegravir half-lives were observed between plasma and PBMCs. The geometric mean raltegravir maximum concentration, the concentration at the end of the dosing interval, and the area under the concentration-time curve during the dose interval in plasma versus PBMCs were 2,640 ng/ml (range, 887 to 10,605 ng/ml) versus 199 ng/ml (range, 82 to 857 ng/ml) (geometric mean ratio [GMR], 13.30; 95% confidence interval [CI], 3.11 to 56.89; P = 0.003); 89 ng/ml (range, 51 to 200 ng/ml) versus 7 ng/ml (range, 2 to 15 ng/ml) (GMR, 13.21; 95% CI, 3.94 to 44.26; P = 0.001); and 12,200 ng·h/ml (range, 5,152 to 30,130 ng·h/ml) versus 909 ng·h/ml (range, 499 to 2,189 ng·h/ml) (GMR, 13.43; 95% CI, 5.13 to 35.16; P < 0.001), respectively. Raltegravir does not accumulate in PBMCs, with intracellular concentrations being about 1/10 of the concentrations in plasma. Despite once-daily dosing, mean raltegravir concentrations at the end of the dosing interval in plasma and PBMCs exceeded the reported protein-binding-adjusted 95% inhibitory concentration (IC(95)) and IC(50) for wild-type viral strains, respectively.

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Year:  2010        PMID: 20937791      PMCID: PMC3019627          DOI: 10.1128/AAC.00789-10

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  18 in total

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Authors:  Charles Hicks; Roy M Gulick
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3.  Safety, tolerability, and pharmacokinetics of raltegravir after single and multiple doses in healthy subjects.

Authors:  M Iwamoto; L A Wenning; A S Petry; M Laethem; M De Smet; J T Kost; S A Merschman; K M Strohmaier; S Ramael; K C Lasseter; J A Stone; K M Gottesdiener; J A Wagner
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4.  Discovery of raltegravir, a potent, selective orally bioavailable HIV-integrase inhibitor for the treatment of HIV-AIDS infection.

Authors:  Vincenzo Summa; Alessia Petrocchi; Fabio Bonelli; Benedetta Crescenzi; Monica Donghi; Marco Ferrara; Fabrizio Fiore; Cristina Gardelli; Odalys Gonzalez Paz; Daria J Hazuda; Philip Jones; Olaf Kinzel; Ralph Laufer; Edith Monteagudo; Ester Muraglia; Emanuela Nizi; Federica Orvieto; Paola Pace; Giovanna Pescatore; Rita Scarpelli; Kara Stillmock; Marc V Witmer; Michael Rowley
Journal:  J Med Chem       Date:  2008-09-25       Impact factor: 7.446

5.  Antiretroviral therapy with the integrase inhibitor raltegravir alters decay kinetics of HIV, significantly reducing the second phase.

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Journal:  AIDS       Date:  2007-11-12       Impact factor: 4.177

6.  Rapid and durable antiretroviral effect of the HIV-1 Integrase inhibitor raltegravir as part of combination therapy in treatment-naive patients with HIV-1 infection: results of a 48-week controlled study.

Authors:  Martin Markowitz; Bach-Yen Nguyen; Eduardo Gotuzzo; Fernando Mendo; Winai Ratanasuwan; Colin Kovacs; Guillermo Prada; Javier O Morales-Ramirez; Clyde S Crumpacker; Robin D Isaacs; Lucinda R Gilde; Hong Wan; Michael D Miller; Larissa A Wenning; Hedy Teppler
Journal:  J Acquir Immune Defic Syndr       Date:  2007-10-01       Impact factor: 3.731

7.  Sustained antiretroviral effect of raltegravir after 96 weeks of combination therapy in treatment-naive patients with HIV-1 infection.

Authors:  Martin Markowitz; Bach-Yen Nguyen; Eduardo Gotuzzo; Fernando Mendo; Winai Ratanasuwan; Colin Kovacs; Guillermo Prada; Javier O Morales-Ramirez; Clyde S Crumpacker; Robin D Isaacs; Havilland Campbell; Kim M Strohmaier; Hong Wan; Robert M Danovich; Hedy Teppler
Journal:  J Acquir Immune Defic Syndr       Date:  2009-11-01       Impact factor: 3.731

8.  Quantification of the HIV-integrase inhibitor raltegravir (MK-0518) in human plasma by high-performance liquid chromatography with fluorescence detection.

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Journal:  J Chromatogr B Analyt Technol Biomed Life Sci       Date:  2008-04-04       Impact factor: 3.205

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Authors:  Roy T Steigbigel; David A Cooper; Princy N Kumar; Joseph E Eron; Mauro Schechter; Martin Markowitz; Mona R Loutfy; Jeffrey L Lennox; Jose M Gatell; Jurgen K Rockstroh; Christine Katlama; Patrick Yeni; Adriano Lazzarin; Bonaventura Clotet; Jing Zhao; Joshua Chen; Desmond M Ryan; Rand R Rhodes; John A Killar; Lucinda R Gilde; Kim M Strohmaier; Anne R Meibohm; Michael D Miller; Daria J Hazuda; Michael L Nessly; Mark J DiNubile; Robin D Isaacs; Bach-Yen Nguyen; Hedy Teppler
Journal:  N Engl J Med       Date:  2008-07-24       Impact factor: 91.245

10.  Raltegravir.

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  11 in total

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2.  From in vitro EC₅₀ to in vivo dose-response for antiretrovirals using an HIV disease model. Part II: application to drug development.

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3.  Correlation between plasma, intracellular, and cervical tissue levels of raltegravir at steady-state dosing in healthy women.

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4.  Pharmacokinetic modeling of plasma and intracellular concentrations of raltegravir in healthy volunteers.

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5.  Single mutations in HIV integrase confer high-level resistance to raltegravir in primary human macrophages.

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Review 6.  Next-generation oral preexposure prophylaxis: beyond tenofovir.

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7.  Population pharmacokinetic analysis and pharmacogenetics of raltegravir in HIV-positive and healthy individuals.

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Journal:  Antimicrob Agents Chemother       Date:  2012-02-27       Impact factor: 5.191

8.  Plasma and intracellular pharmacokinetics of darunavir/ritonavir once daily and raltegravir once and twice daily in HIV-infected individuals.

Authors:  Akil Jackson; Victoria Watson; David Back; Saye Khoo; Neill Liptrott; Deidre Egan; Keerti Gedela; Chris Higgs; Riaz Abbas; Brian Gazzard; Marta Boffito
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9.  Cytokine secretion from brain macrophages infected with human immunodeficiency virus in vitro and treated with raltegravir.

Authors:  Erick T Tatro; Benchawanna Soontornniyomkij; Scott L Letendre; Cristian L Achim
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10.  Does Once-Daily Raltegravir Have Any Role in the Antiretroviral Treatment?

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Journal:  Medicine (Baltimore)       Date:  2015-10       Impact factor: 1.817

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