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. 2024 Dec 20:(214):10.3791/67150.
doi: 10.3791/67150.

Identification of EcoHIV-Infected Cells in Microglia-Manipulated Transgenic Mice

Affiliations
  • PMID: 39760359
  • PMCID: PMC12139707 (available on )
  • DOI: 10.3791/67150

Identification of EcoHIV-Infected Cells in Microglia-Manipulated Transgenic Mice

Hailong Li et al. J Vis Exp. .

Abstract

Combined antiretroviral therapy (cART) has dramatically improved the quality of life for people living with HIV (PLWH). However, over 4 million PLWH are over the age of fifty and experience accompanying HIV-associated neurocognitive disorders (HAND). To understand how HIV impacts the central nervous system, a reliable and feasible model of HIV is necessary. Previously, a novel biological system using chimeric HIV (EcoHIV) inoculation was developed in a rat model to investigate neurocognitive impairments and synaptic dysfunction. Nevertheless, a significant challenge remains in clarifying EcoHIV's neuroanatomical distribution, particularly its differential expression in various cell types in the brain. In the current study, EcoHIV with mScarlet fluorescence labeling was modified and retro-orbitally injected into Tmem119-EGFP knock-in mice (which express enhanced green fluorescence protein primarily in microglia) to determine if microglia are the major cell type responsible for viral expression and reservoirs of HIV in the brain. The current data show that: (1) in vitro, EcoHIV-mScarlet fluorescence signals were predominantly localized in microglia-like cells among primary rodent brain cells; (2) in vivo, injection of EcoHIV-mScarlet into Tmem119-EGFP mice induced significant HIV expression in the mouse brain. The co-localization of mScarlet and EGFP signals suggests that microglia are the main cell type harboring HIV in the brain. Overall, EcoHIV in rodents offers a valuable biological system to study microglial alterations, viral reservoirs in the brain, and the neurological mechanisms of HIV-associated neurocognitive disorders.

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Conflict of interest statement

DISCLOSURES:

None of the authors have conflicts of interest to declare.

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References

    1. Vigorito M, Lashomb AL, Chang SL Spatial learning and memory in HIV-1 transgenic rats. J Neuroimmune Pharmacol 2, 319–328 (2007). - PubMed
    1. Moran LM, Booze RM, Mactutus CF Time and time again: Temporal processing demands implicate perceptual and gating deficits in the HIV-1 transgenic rat. J. Neuroimmune Pharmacol 8 (4), 988–997 (2013). - PMC - PubMed
    1. Repunte-Canonigo et al. Gene expression changes consistent with neuroAIDS and impaired working memory in HIV-1 transgenic rats. Mol Neurodegener 9, 26 (2014). - PMC - PubMed
    1. Reid W et al. An HIV-1 transgenic rat that develops HIV-related pathology and immunologic dysfunction. Proc Natl Acad Sci USA 98 (16), 9271–9276 (2001). - PMC - PubMed
    1. McLaurin KA, Li H, Booze RM, Mactutus CF Disruption of timing: NeuroHIV progression in the post-cART era. Sci Rep 9, 827 (2019). - PMC - PubMed

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