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Sriplienchan, S.

Publications and source records attributed to Sriplienchan, S..

2 recordsLinked to original sources

Unique CD8+ T Cell Populations Expand during ART and Predict Delayed HIV-1 Rebound

Antiretroviral therapy (ART) suppresses HIV-1 replication but does not eliminate the latent reservoir, resulting in viral rebound with variable kinetics after treatment interruption. How the immune cell states established during ART influences timing of rebound is not fully understood. In this study, we analyzed 111 participants across multiple cohorts, with 188 single-cell multiomic samples generated and integrated for joint analysis. Longitudinal profiling of peripheral blood mononuclear cells from individuals with acute HIV-1 infection on ART, spanning early infection through sustained therapy and pre-analytical treatment interruption, revealed that time to viral rebound was driven not by global changes in immune composition but by dynamic transcriptional programs within CD8+ T cells. During ART, there was a dramatic expansion of a unique cluster of poised naive CD8+ T cells, with a distinct immune state positioned upstream of stem-like memory CD8+ T cells along a cell differentiation continuum. The differential abundance of this poised naive CD8+ T cell population was enriched in participants with delayed rebound and showed strong predictive power for discriminating time to rebound. Mechanistically, the poised naive CD8+ T cells exhibited features of a precursor phenotype of stem-like memory CD8+ T cells, and showed activation of the TNF-NF-{kappa}B signaling pathway and increased chromatin accessibility at AP-1 motifs. Notably, both poised naive CD8+ T cells and stem-like memory CD8+ T cells were consistently enhanced during ART in both acute and chronic infection. In participants who received investigational therapeutic vaccination, the dominant predictive signal shifted downstream along the differentiation trajectory, with stem-like memory CD8+ T cells emerging as the primary determinant of delayed rebound. Together, these findings identify a dynamic CD8+ T cell state continuum as a central determinant of HIV-1 rebound, even in the absence of antigen-specificity, where ART establishes a predictive poised naive state that can be further leveraged by vaccination to enhance protective stem-like memory responses.

immunology↗

HIV lymphoid tissue fibrosis occurs in the earliest stages of acute HIV infection and is associated with macrophage-derived TGF-β

HIV infection is associated with lymphatic tissue damage caused by collagen deposition in the fibroblastic reticular cell network (FRCn) of the parafollicular T cell zone (TZ), which leads to impaired antigen presentation, T cell depletion, and reduced antibody formation. In treated chronic HIV infection, damage persists despite antiretroviral therapy (ART), but it is not known if very early initiation of ART could limit damage and preserve immune function. We studied participants in the Thai RV254 acute infection cohort and found significant collagen deposition in the FRCn even in the earliest Fiebig stage 1 acute infection. The amount of TZ collagen correlates with the frequency of TGF-{beta}+ macrophages which, in turn, correlates with the frequency of HIV RNA-producing cells. We conclude that immediate initiation of ART may have limited impact in preventing or reversing collagen accumulation in LNs.

microbiology↗