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HIV-1 latency reversal and immune enhancing activity of IL-15 is not influenced by sex hormones
Carissa S. Holmberg, Callie Levinger, Marie Abongwa, Cristina Ceriani, Nancie M. Archin, Marc Siegel, Mimi Ghosh, Alberto Bosque
Carissa S. Holmberg, Callie Levinger, Marie Abongwa, Cristina Ceriani, Nancie M. Archin, Marc Siegel, Mimi Ghosh, Alberto Bosque
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Research Article AIDS/HIV Immunology

HIV-1 latency reversal and immune enhancing activity of IL-15 is not influenced by sex hormones

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Abstract

The role of different biological variables including biological sex, age, and sex hormones in Human immunodeficiency virus (HIV) cure approaches is not well understood. The γc-cytokine IL-15 is a clinically relevant cytokine that promotes immune activation and mediates HIV reactivation from latency. In this work, we examined the interplay that biological sex, age, and sex hormones 17β-estradiol, progesterone, and testosterone may have on the biological activity of IL-15. We found that IL-15–mediated CD4+ T cell activation was higher in female donors than in male donors. This difference was abrogated at high 17β-estradiol concentration. Additionally, there was a positive correlation between age and both IL-15–mediated CD8+ T cell activation and IFN-γ production. In a primary cell model of latency, biological sex, age, or sex hormones did not influence the ability of IL-15 to reactivate latent HIV. Finally, 17β-estradiol did not consistently affect reactivation of translation-competent reservoirs in CD4+ T cells from people living with HIV who are antiretroviral therapy (ART) suppressed. Our study has found that biological sex and age, but not sex hormones, may influence some of the biological activities of IL-15. Understanding how different biological variables may affect HIV cure therapies will help us evaluate current and future clinical trials aimed toward HIV cure in diverse populations.

Authors

Carissa S. Holmberg, Callie Levinger, Marie Abongwa, Cristina Ceriani, Nancie M. Archin, Marc Siegel, Mimi Ghosh, Alberto Bosque

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Figure 3

Sex hormone receptor expression in CD4+ T and CD8+ T cells.

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Sex hormone receptor expression in CD4+ T and CD8+ T cells.
(A) Western ...
(A) Western blot analysis of estrogen receptor-1 (ESR-1, clone EPR4097, Abcam, ab108398) in 2 male and 2 female donors in total CD4+ T cells (top panel), and in additional 3 male and 3 female donors (bottom panel) (n = 10). (B) ESR-1 analysis in CD4+ T cell naive and memory subsets in 2 male and 2 female donors. Purity of the populations evaluated using CD45 isoforms with naive CD4+ T cells (CD45RA) showing longer isoforms than memory (CD45RO) cells. (C) Relative quantification of ESR-1 in naive and memory CD4+ T cell purified populations. Mann-Whitney test was used to calculate P value (n = 4). (D) Representative gating of ESR-1 expression in CD4+ T cell subsets with the top row showing IgG control antibody and the bottom showing ESR-1 antibody. (E) Quantification of the percentage of each subset with the total CD4 population (left). Analysis of the percent ESR-1 expression in each CD4 subset (middle) and the normalized MFI of ESR-1 in each subset (right). n = 6. Wilcoxon matched-pairs signed rank test was used to calculate P values. Teal symbols are female donors and black symbols are male donors; each individual participant is designated by their own shape in each graph.

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