Literature DB >> 28368743

Population pharmacokinetics analysis of VRC01, an HIV-1 broadly neutralizing monoclonal antibody, in healthy adults.

Yunda Huang1,2, Lily Zhang3, Julie Ledgerwood4, Nicole Grunenberg3, Robert Bailer5, Abby Isaacs3, Kelly Seaton6, Kenneth H Mayer7, Edmund Capparelli8, Larry Corey3, Peter B Gilbert1,9.   

Abstract

The monoclonal antibody VRC01 targets the CD4 binding site of the human immunodeficiency virus (HIV)-1 envelope. In the clinical study HVTN 104 (NCT02165267), 84 HIV-uninfected adults received multiple-dose intravenous (IV) VRC01 (10, 20, 30 or 40 mg/kg) every 4 or 8 weeks or subcutaneous (SC) VRC01 (5 mg/kg) every 2 weeks, and were followed for 32 weeks. We conducted a population pharmacokinetics (popPK) analysis based on 1117 VRC01 serum concentrations using a 2-compartment PK model with first-order elimination; for SC VRC01 a depot compartment with a first-order absorption rate constant was also included. All PK parameters were estimated with acceptable precision. Estimated bioavailability of SC VRC01 was 74%, with peak concentrations occurring 2-3 d after administration. For both IV and SC VRC01, population mean estimates for clearance (CL), central volume of distribution (Vc), inter-compartmental distribution clearance (Q) and peripheral volume of distribution (Vp) were 0.40 L/day, 1.94 L, 0.84 L/day and 4.90 L, respectively; the estimated terminal half-life was 15 d and these were independent of VRC01 dose. Body weight significantly influenced CL (1.2% fold/kg), Vc (1.0% fold/kg), Q (0.69 log(L/day)/kg) and Vp (0.82 log(L)/kg). The developed popPK model, supporting weight-dependent dosing regimens, projected positive trough levels, 5.54 (95% prediction interval: 1.69, 14.5) mcg/mL and 15.9 (5.29, 46.63) mcg/mL, respectively, for the 10 mg/kg and 30 mg/kg 8-weekly regimens being evaluated in ongoing HIV prevention efficacy studies of IV VRC01. These results are critical for future dose-regimen selection and modeling research to identify VRC01 serum concentration levels sufficient for protection against HIV infection.

Entities:  

Keywords:  Body weight; VRC01 serum concentration; multiple-dose; time-concentration curve; two-compartment

Mesh:

Substances:

Year:  2017        PMID: 28368743      PMCID: PMC5524155          DOI: 10.1080/19420862.2017.1311435

Source DB:  PubMed          Journal:  MAbs        ISSN: 1942-0862            Impact factor:   5.857


  25 in total

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5.  Coverage of primary mother-to-child HIV transmission isolates by second-generation broadly neutralizing antibodies.

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9.  Neutralizing antibodies to HIV-1 envelope protect more effectively in vivo than those to the CD4 receptor.

Authors:  Amarendra Pegu; Zhi-yong Yang; Jeffrey C Boyington; Lan Wu; Sung-Youl Ko; Stephen D Schmidt; Krisha McKee; Wing-Pui Kong; Wei Shi; Xuejun Chen; John-Paul Todd; Norman L Letvin; Jinghe Huang; Martha C Nason; James A Hoxie; Peter D Kwong; Mark Connors; Srinivas S Rao; John R Mascola; Gary J Nabel
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Review 2.  The pharmacological treatment of acute HIV infections in neonates.

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Review 4.  So Pathogenic or So What?-A Brief Overview of SIV Pathogenesis with an Emphasis on Cure Research.

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5.  Brief Report: Prediction of Serum HIV-1 Neutralization Titers After Passive Administration of VRC01.

Authors:  Yunda Huang; Yuanyuan Zhang; Robert Bailer; Nicole Grunenberg; Lindsay N Carpp; Kelly Seaton; Kenneth H Mayer; Julie Ledgerwood; Lawrence Corey; John Mascola; David Montefiori; Peter B Gilbert
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6.  Safety, Tolerability, and Pharmacokinetics of the Broadly Neutralizing Human Immunodeficiency Virus (HIV)-1 Monoclonal Antibody VRC01 in HIV-Exposed Newborn Infants.

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Journal:  J Infect Dis       Date:  2020-07-23       Impact factor: 7.759

7.  Feasibility and Successful Enrollment in a Proof-of-Concept HIV Prevention Trial of VRC01, a Broadly Neutralizing HIV-1 Monoclonal Antibody.

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Journal:  J Acquir Immune Defic Syndr       Date:  2021-05-01       Impact factor: 3.771

8.  Model Informed Development of VRC01 in Newborn Infants Using a Population Pharmacokinetics Approach.

Authors:  Jerry Li; Mina Nikanjam; Coleen K Cunningham; Elizabeth J McFarland; Emily E Coates; Katherine V Houser; Bob C Lin; Adrian B McDermott; Britta Flach; Lucio Gama; Richard A Koup; Barney S Graham; John R Mascola; Julie E Ledgerwood; Edmund V Capparelli
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9.  Timing HIV infection with a simple and accurate population viral dynamics model.

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10.  Rectal tissue and vaginal tissue from intravenous VRC01 recipients show protection against ex vivo HIV-1 challenge.

Authors:  Rena D Astronomo; Maria P Lemos; Sandeep R Narpala; Julie Czartoski; Lamar Ballweber Fleming; Kelly E Seaton; Madhu Prabhakaran; Yunda Huang; Yiwen Lu; Katharine Westerberg; Lily Zhang; Mary K Gross; John Hural; Hong-Van Tieu; Lindsey R Baden; Scott Hammer; Ian Frank; Christina Ochsenbauer; Nicole Grunenberg; Julie E Ledgerwood; Kenneth Mayer; Georgia Tomaras; Adrian B McDermott; M Juliana McElrath
Journal:  J Clin Invest       Date:  2021-08-16       Impact factor: 19.456

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