Cumulative Viral Load and Virologic Decay Patterns after Antiretroviral Therapy in HIV-Infected Subjects Influence CD4 Recovery and AIDS

Abstract

Background: The impact of viral load (VL) decay and cumulative VL on CD4 recovery and AIDS after highly-active antiretroviral therapy (HAART) is unknown. Methods and Findings: Three virologic kinetic parameters (first year and overall exponential VL decay constants, and first year VL slope) and cumulative VL during HAART were estimated for 2,278 patients who initiated HAART in the U.S. Military HIV Natural History Study. CD4 and VL trajectories were computed using linear and nonlinear Generalized Estimating Equations models. Multivariate Poisson and linear regression models were used to determine associations of VL parameters with CD4 recovery, adjusted for factors known to correlate with immune recovery. Cumulative VL higher than the sample median was independently associated with an increased risk of AIDS (relative risk 2.38, 95% confidence interval 1.56-3.62 p<0.001). Among patients with VL suppression, first year VL decay and slope were independent predictors of early CD4 recovery (p = 0.001) and overall gain (p<0.05). Despite VL suppression, those with slow decay during the first year of HAART as well as during the entire therapy period (overall), in general, gained less CD4 cells compared to the other subjects (133 vs. 195.4 cells/microL; p = 0.001) even after adjusting for potential confounders. Conclusions: In a cohort with free access to healthcare, independent of established predictors of AIDS and CD4 recovery during HAART, cumulative VL and virologic decay patterns were associated with AIDS and distinct aspects of CD4 reconstitution.

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Document Details

Document Type
Technical Report
Publication Date
May 20, 2011
Accession Number
ADA544753

Entities

People

  • Anuradha Ganesan
  • Brian K. Agan
  • Glenn Wortmann
  • Greg Grandits
  • Hemant Kulkarni
  • Jason F. Okulicz
  • Matthew J. Dolan
  • Michael Landrum
  • Michael P. Polis
  • Nancy F Crum-Cianflone
  • Sunil K. Ahuja
  • Vincent C Marconi

Organizations

  • Uniformed Services University of the Health Sciences

Tags

DTIC Thesaurus Topics

  • Air Force
  • Allergy And Immunology
  • Cell Count
  • Diseases And Disorders
  • Drug Resistance
  • Equations
  • Health Care
  • Health Services
  • Infectious Diseases
  • Lymphocytes
  • Medical Personnel
  • Military Personnel
  • Statistical Analysis
  • Trajectories
  • United States
  • Viral Load
  • Virus Diseases

Fields of Study

  • Medicine

Readers

  • Immunology
  • Military Logistics and Supply Chain Management
  • Regression Analysis.