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Van Zandt, A. R.

Publications and source records attributed to Van Zandt, A. R..

2 recordsLinked to original sources

Neuroinvasion by Simian Immunodeficiency Virus Triggers Glial Senescence and Accelerated Neurodegeneration

Virus-induced accelerated aging has emerged as a potential contributor to HIV-associated neurocognitive disorders (HAND), despite widespread implementation of combination antiretroviral therapy (cART). Although evidence of accelerated aging in people living with HIV (PLWH) has been reported, most investigations of acute infection rely on in vitro systems or small animal models, leaving a critical gap in understanding early neuropathological events. To address this, we analyzed formalin-fixed, paraffin-embedded (FFPE) brain tissues from rhesus macaques acutely infected with simian immunodeficiency virus (SIV). We focused on two key aging-related proteins: the cellular senescence marker p16INK4a (p16) and the NAD-dependent deacetylase sirtuin 1 (SIRT1). We hypothesized that accelerated aging phenotypes would be detectable during acute infection, manifesting as increased p16 expression and altered SIRT1 levels, correlating with neurodegeneration. Consistent with this hypothesis, we observed marked upregulation of GFAP and p16, along with evidence of neurodegeneration, across multiple brain regions - including the frontal lobe, caudate, putamen, thalamus, hippocampus, and cerebellum - by 21 days post-infection. These findings suggest that aging-related and senescence pathways are activated almost immediately following HIV infection, highlighting the potential importance of astrocyte- or CNS-specific therapeutic strategies to mitigate early neuropathology.

neuroscience↗

Dietary Indoles Modulate Gut Barrier Integrity via the AhR-IL-22 Axis in ART-Treated SIV Infection

HIV infection rapidly impairs the gastrointestinal (GI) barrier, contributing to persistent mucosal immune dysfunction, microbial translocation, and systemic inflammation despite antiretroviral therapy (ART). Using SIV-infected rhesus macaques on long-term ART, we investigated mechanisms underlying impairment in gut barrier-protective IL-17/IL-22 responses and the potential modulation of this pathway by dietary indoles. Longitudinal profiling of colonic epithelial and lamina propria cells revealed a selective loss of IL-17/IL-22-producing {gamma}{delta} T cells and type 3 innate lymphoid cells (ILC3s). This loss correlated with reduced expression of the transcription factors AhR and ROR{gamma}t and was associated with elevated plasma markers of intestinal epithelial barrier disruption (IEBD), including intestinal fatty acid-binding protein (iFABP), zonulin, and LPS-binding protein (LBP). Targeting this transcriptional deficiency, dietary indole supplementation for one month restored colonic AhR IL-22-producing {gamma}{delta} T cells and ROR{gamma}t ILC3s and V{delta}1 T cells, and was associated with reduced iFABP and zonulin levels. Our findings indicate that disruption of the AhR-ROR{gamma}t-IL-17/IL-22 axis is a key pathogenic mechanism underlying persistent IEBD in chronic SIV/HIV infection. Modulation of gut AhR signaling may represent a potential approach to reinforce mucosal barrier function and reduce chronic inflammation that persists in people living with HIV.

immunology↗