CD8+ lymphocyte control of SIV infection during antiretroviral therapy

Youfang Cao1,2, Emily K Cartwright3, Guido Silvestri3

  • 1Theoretical Biology and Biophysics (T-6), Los Alamos National Laboratory, Los Alamos, NM, United States of America.

Plos Pathogens
|October 12, 2018
PubMed

Insights

CD8+ lymphocytes control simian immunodeficiency virus (SIV) replication. Depleting these cells causes temporary viremia, with control restored upon repopulation. Mathematical modeling reveals CD8+ cell dynamics are crucial for viral suppression during treatment.

Area of Science:

  • Immunology
  • Virology
  • Mathematical Biology

Background:

  • CD8+ lymphocytes are vital for controlling viral infections like HIV.
  • The precise mechanisms and extent of CD8+ lymphocyte contribution to viral control remain incompletely understood.
  • Previous studies on CD8+ lymphocyte depletion in simian immunodeficiency virus (SIV)-infected macaques provided valuable but complex data.

Purpose of the Study:

  • To investigate the role of CD8+ lymphocytes in viral control during antiretroviral treatment (ART).
  • To develop a viral dynamic model that incorporates effector cell function and exhaustion.
  • To explain experimental observations of CD8+ lymphocyte depletion and its impact on viral load.

Main Methods:

  • Depletion of CD8+ lymphocytes in SIV-infected rhesus macaques undergoing ART.
  • Development of a mathematical viral dynamic model including latent reservoirs, effector cells, exhaustion, and cytolytic/non-cytolytic functions.
  • Fitting the model to viral load data from the CD8 depletion experiment.

Main Results:

  • CD8+ lymphocyte depletion led to transient plasma viremia, with control restored upon cell repopulation.
  • The latent reservoir significantly impacts peak viral load post-depletion, more so than drug efficacy.
  • The model indicates CD8+ lymphocyte killing rates are dynamic, influenced by effector cell activation and exhaustion, increasing with ART initiation.

Conclusions:

  • The developed model explains the impact of CD8+ lymphocyte depletion on viral load during ART.
  • It highlights the dynamic role of CD8+ lymphocytes, including their cytolytic function and exhaustion, in controlling viral infections.
  • The model offers a unified explanation for previously puzzling experimental findings regarding CD8 depletion and ART initiation.

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