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Neuropathogenesis of HIV-1: Insights from Across the Spectrum of Acute Through Long-term Treated Infection

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Publisher Springer
Date 2022 Jul 26
PMID 35882661
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Abstract

This review outlines the neuropathogenesis of HIV, from initial HIV entry into the central nervous system (CNS) to chronic infection, focusing on key advancements in the last 5 years. Discoveries regarding acute HIV infection reveal timing and mechanisms of early HIV entry and replication in the CNS, early inflammatory responses, and establishment of genetically distinct viral reservoirs in the brain. Recent studies additionally explore how chronic HIV infection is maintained in the CNS, examining how the virus remains in a latent "hidden" state in diverse cells in the brain, and how this leads to sustained pathological inflammatory responses. Despite viral suppression with antiretroviral therapy, HIV can persist and even replicate in the CNS, and associate with ongoing neuropathology including CD8 + T-lymphocyte mediated encephalitis. Crucial investigation to advance our understanding of the immune mechanisms that both control viral infection and lead to pathological consequences in the brain is necessary to develop treatments to optimize long-term neurologic health in people living with HIV.

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References
1.
Carroll-Anzinger D, Al-Harthi L . Gamma interferon primes productive human immunodeficiency virus infection in astrocytes. J Virol. 2005; 80(1):541-4. PMC: 1317538. DOI: 10.1128/JVI.80.1.541-544.2006. View

2.
Samikkannu T, Atluri V, Arias A, Rao K, Mulet C, Jayant R . HIV-1 subtypes B and C Tat differentially impact synaptic plasticity expression and implicates HIV-associated neurocognitive disorders. Curr HIV Res. 2015; 12(6):397-405. PMC: 4554345. DOI: 10.2174/1570162x13666150121104720. View

3.
Winston A, Antinori A, Cinque P, Fox H, Gisslen M, Henrich T . Defining cerebrospinal fluid HIV RNA escape: editorial review AIDS. AIDS. 2019; 33 Suppl 2:S107-S111. DOI: 10.1097/QAD.0000000000002252. View

4.
Nolan R, Muir R, Runner K, Haddad E, Gaskill P . Role of Macrophage Dopamine Receptors in Mediating Cytokine Production: Implications for Neuroinflammation in the Context of HIV-Associated Neurocognitive Disorders. J Neuroimmune Pharmacol. 2018; 14(1):134-156. PMC: 6391172. DOI: 10.1007/s11481-018-9825-2. View

5.
Li G, Maric D, Major E, Nath A . Productive HIV infection in astrocytes can be established via a nonclassical mechanism. AIDS. 2020; 34(7):963-978. PMC: 7429268. DOI: 10.1097/QAD.0000000000002512. View