Analysis of the in vivo turnover of CD4+ T-cell subsets in chronically SIV-infected sooty mangabeys

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Abstract

Aberrant turnover of memory CD4+ T-cells is central to Acquired Immunodeficiency Syndrome (AIDS) progression. Understanding the relationship between the turnover of CD4+ subsets and immunological homeostasis during simian immunodeficiency virus (SIV) infection in natural hosts may provide insight into mechanisms of immune regulation that may serve as models for therapeutic intervention in Human Immunodeficiency Virus (HIV)-infected persons. Sooty mangabeys (SMs) have naturally evolved with SIV to avoid AIDS progression while maintaining healthy peripheral CD4+ T-cell counts and thus represent a model by which therapeutic interventions for AIDS progression might be elucidated. To assess the relationship between the turnover of CD4+ subsets and immunological homeostasis during SIV infection in non-progressive hosts, we treated 6 SIV-uninfected and 9 SIVinfected SMs with 2′-bromo-5′-deoxyuridine (BrdU) for 14 days and longitudinally assessed CD4+ T-cell subset turnover by polychromatic flow cytometry. We observed that, in SIV-infected SMs, turnover of CD4+ T-cell naïve and central, transitional, and effector memory subsets is comparable to that in uninfected animals. Comparable turnover of CD4+ T-cell subsets irrespective of SIV-infection status likely contributes to the lack of aberrant immune activation and disease progression observed after infection in non-progressive hosts.

Figures

  • Fig 1. Ki67 and BrdU Expression Among Bulk Peripheral Blood Lymphocytes. The mean (±SEM) percent Ki67+ (A+B) and percent BrdU+ (C+D) of peripheral blood CD4+ (A+C) and CD8+ (B+D) T-cells were assessed longitudinally by flow cytometry in both uninfected (black squares) and infected (red circles) animals. p = NS between infected and uninfected controls at all timepoints for all populations (Mann-Whitney U). Shaded area represents BrdU administration period. Data points are shown only for animals above which 100 events were collected for the parent population.
  • Fig 2. BrdU and Ki67 Expression By CD4+ and CD8+ T-cell Subsets. A-B. (±SEM) percent BrdU expression was assessed longitudinally by flow cytometry among CD4+ (A) and CD8+ (B) TN, TCM, TTM, TEM, and CCR5+ TM in uninfected (left) and SIV-infected (right) animals. C. Mean (±SEM) longitudinal Ki67 expression of CD4+ TN, TCM, TTM, TEM, and CCR5+ TM in uninfected (left) and SIV-infected (right) animals. p = NS between infected and uninfected controls at all timepoints for all populations (Mann-Whitney U). Shaded area represents BrdU administration period. Data points are shown only for animals above which 100 events were collected for the parent population.
  • Table 1. a, p, and d values for CD4+ T-cell subsets.
  • Table 1. (Continued)

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CITATION STYLE

APA

Ortiz, A. M., Carnathan, D. G., Yu, J., Sheehan, K. M., Kim, P., Reynaldi, A., … Silvestri, G. (2016). Analysis of the in vivo turnover of CD4+ T-cell subsets in chronically SIV-infected sooty mangabeys. PLoS ONE, 11(5). https://doi.org/10.1371/journal.pone.0156352

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