Literature DB >> 21501034

Ritonavir-boosted protease inhibitors in HIV therapy.

Mark W Hull1, Julio S G Montaner.   

Abstract

The advent of combination antiretroviral therapy has led to significant improvement in the care of HIV-infected patients. Originally designed as a protease inhibitor (PI), ritonavir is currently exclusively used as a pharmacokinetic enhancer of other protease inhibitors, predominantly due to ritonavir's potent inhibition of the cytochrome P450 3A4 isoenzyme. Ritonavir-boosting of PIs decrease pill burden and frequency of dosing. Boosted PIs are recommended for first-line therapy in treatment and play a key role in the management of treatment-experienced patients. Potential problems associated with PIs include metabolic abnormalities (e.g. dyslipidemia), increased cardiovascular risk, and drug interactions.

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Year:  2011        PMID: 21501034     DOI: 10.3109/07853890.2011.572905

Source DB:  PubMed          Journal:  Ann Med        ISSN: 0785-3890            Impact factor:   4.709


  41 in total

1.  Effect of milk thistle on the pharmacokinetics of darunavir-ritonavir in HIV-infected patients.

Authors:  José Moltó; Marta Valle; Cristina Miranda; Samandhy Cedeño; Eugenia Negredo; Bonaventura Clotet
Journal:  Antimicrob Agents Chemother       Date:  2012-03-19       Impact factor: 5.191

Review 2.  Pharmacokinetic Enhancement of HIV Antiretroviral Therapy During Pregnancy.

Authors:  Engie Salama; Ahizechukwu C Eke; Brookie M Best; Mark Mirochnick; Jeremiah D Momper
Journal:  J Clin Pharmacol       Date:  2020-08-14       Impact factor: 3.126

3.  Chronic Effects of Ethanol and/or Darunavir/Ritonavir on U937 Monocytic Cells: Regulation of Cytochrome P450 and Antioxidant Enzymes, Oxidative Stress, and Cytotoxicity.

Authors:  P S S Rao; Santosh Kumar
Journal:  Alcohol Clin Exp Res       Date:  2016-01       Impact factor: 3.455

4.  The pharmacokinetic interaction between ivacaftor and ritonavir in healthy volunteers.

Authors:  Anne Marie Liddy; Gavin McLaughlin; Susanne Schmitz; Deirdre M D'Arcy; Michael G Barry
Journal:  Br J Clin Pharmacol       Date:  2017-06-27       Impact factor: 4.335

5.  The effect of ritonavir on human CYP2B6 catalytic activity: heme modification contributes to the mechanism-based inactivation of CYP2B6 and CYP3A4 by ritonavir.

Authors:  Hsia-lien Lin; Jaime D'Agostino; Cesar Kenaan; Diane Calinski; Paul F Hollenberg
Journal:  Drug Metab Dispos       Date:  2013-07-25       Impact factor: 3.922

6.  In vitro and in vivo antiviral activity and resistance profile of the hepatitis C virus NS3/4A protease inhibitor ABT-450.

Authors:  Tami Pilot-Matias; Rakesh Tripathi; Daniel Cohen; Isabelle Gaultier; Tatyana Dekhtyar; Liangjun Lu; Thomas Reisch; Michelle Irvin; Todd Hopkins; Ron Pithawalla; Timothy Middleton; Teresa Ng; Keith McDaniel; Yat Sun Or; Rajeev Menon; Dale Kempf; Akhteruzzaman Molla; Christine Collins
Journal:  Antimicrob Agents Chemother       Date:  2014-12-01       Impact factor: 5.191

Review 7.  Influence of drug transport proteins on the pharmacokinetics and drug interactions of HIV protease inhibitors.

Authors:  Latoya Griffin; Pieter Annaert; Kim L R Brouwer
Journal:  J Pharm Sci       Date:  2011-06-22       Impact factor: 3.534

8.  Mg supplementation protects against ritonavir-mediated endothelial oxidative stress and hepatic eNOS downregulation.

Authors:  Xi Chen; I Tong Mak
Journal:  Free Radic Biol Med       Date:  2014-01-14       Impact factor: 7.376

9.  Pharmacokinetic Interactions Between Quinine and Lopinavir/Ritonavir in Healthy Thai Adults.

Authors:  Siwalee Rattanapunya; Tim R Cressey; Ronnatrai Rueangweerayut; Yardpiroon Tawon; Panida Kongjam; Kesara Na-Bangchang
Journal:  Am J Trop Med Hyg       Date:  2015-09-28       Impact factor: 2.345

Review 10.  Drug-drug interactions during antiviral therapy for chronic hepatitis C.

Authors:  Jennifer J Kiser; James R Burton; Gregory T Everson
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2013-07-02       Impact factor: 46.802

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