Adult Human Brain Tissue Cultures to Study NeuroHIV.
Rachel Van DuyneElena IrolloAngel LinJames A JohnsonAlain M GuillemErick V O'BrienLaura MerjaBradley NashJoshua G JacksonAtom SarkarZachary A KlaseOlimpia MeucciPublished in: Cells (2024)
HIV-associated neurocognitive disorders (HAND) persist under antiretroviral therapy as a complex pathology that has been difficult to study in cellular and animal models. Therefore, we generated an ex vivo human brain slice model of HIV-1 infection from surgically resected adult brain tissue. Brain slice cultures processed for flow cytometry showed >90% viability of dissociated cells within the first three weeks in vitro, with parallel detection of astrocyte, myeloid, and neuronal populations. Neurons within brain slices showed stable dendritic spine density and mature spine morphologies in the first weeks in culture, and they generated detectable activity in multi-electrode arrays. We infected cultured brain slices using patient-matched CD4+ T-cells or monocyte-derived macrophages (MDMs) that were exposed to a GFP-expressing R5-tropic HIV-1 in vitro. Infected slice cultures expressed viral RNA and developed a spreading infection up to 9 days post-infection, which were significantly decreased by antiretrovirals. We also detected infected myeloid cells and astrocytes within slices and observed minimal effect on cellular viability over time. Overall, this human-centered model offers a promising resource to study the cellular mechanisms contributing to HAND (including antiretroviral toxicity, substance use, and aging), infection of resident brain cells, and new neuroprotective therapeutics.
Keyphrases
- antiretroviral therapy
- hiv infected
- induced apoptosis
- hiv positive
- human immunodeficiency virus
- white matter
- hiv aids
- resting state
- cerebral ischemia
- hiv infected patients
- endothelial cells
- cell cycle arrest
- flow cytometry
- dendritic cells
- sars cov
- small molecule
- acute myeloid leukemia
- magnetic resonance imaging
- cell proliferation
- signaling pathway
- spinal cord injury
- immune response
- south africa
- cell death
- subarachnoid hemorrhage
- brain injury
- gestational age
- blood brain barrier
- preterm birth
- genetic diversity
- sensitive detection
- nucleic acid