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Rodriguez, M. R.

Publications and source records attributed to Rodriguez, M. R..

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Neurovirulent and non-neurovirulent strains of HIV-1 and their Tat proteins induce differential cytokine-chemokine profiles

HIV-1 enters the central nervous system (CNS) early in infection, and a significant proportion of people with HIV experience CNS complications despite anti-retroviral therapy. Chronic immune dysfunction, inflammatory cytokines and chemokines, and viral proteins like Tat and gp120 released by HIV-1-infected immune cells are implicated in the pathogenesis of HIV-1-associated neurocognitive disorders (HAND). To elucidate the contribution of non-viral factors to CNS complications in people with HIV-1, a comparative analysis of neurovirulent subtype B (HIV-1ADA) and non-neurovirulent subtype C (HIV-1Indie-C1) isolates was performed. Culture supernatants from HIV-1-infected PBMCs, either with or without immunodepletion of Tat and gp120, were used to treat SH-SY5Y neuroblastoma cells. HIV-1ADA-infected PBMC media showed significantly higher cytotoxicity than HIV-1IndieC1-infected PBMC media, notwithstanding the depletion of Tat and gp120, highlighting the role of non-viral factors contributing to neurotoxicity. A comparison of inflammatory profiles revealed that HIV-1ADA media contained elevated levels of cytokines (IL-1, IL-1{beta}, IL-6, TNF) and chemokines (CCL2, CCL3, CCL4, IP10). Given the involvement of Tat in upregulating immune mediators, PBMCs from healthy subjects were treated with recombinant purified Tat from subtype B or C. Subtype B Tat induced a stronger inflammatory response than subtype C Tat. These results confirm that both viral and non-viral immune factors mediate neuronal damage in people with HIV.

microbiology↗