Central nervous system B cell multiomics reveals a legacy of immune dysregulation in long-term treated HIV infection.

Filippidis, Paraskevas; Lu, Chang; Orlinick, Benjamin; Pang, Alina; Nelson, Allison; Spudich, Serena; Machiavello Roman, Francisco; Zigackova, Dagmar et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

Despite effective antiretroviral therapy (ART), people with HIV (PWH) are at risk for central nervous system (CNS) abnormalities, including cognitive impairment. B cells and antibodies are key mediators of adaptive immunity in neuroinflammatory disorders and crucial for viral control, but their role in HIV-associated CNS pathology is unknown. Here, we apply multimodal transcriptomic, epigenetic, and B cell receptor profiling of B cells across cerebrospinal fluid (CSF), choroid plexus, and blood from ART-treated PWH and people without HIV, alongside neurocognitive assessments. In ART-suppressed PWH, CSF resting memory B cells exhibit impaired pathogen responsiveness and high antibody gene mutations, suggesting CNS-restricted antigenic adaptation. Choroid plexus B cells exhibit similar transcriptomic immune perturbations despite viral suppression. Notably, CNS-specific B cell molecular alterations are associated with poorer neurocognitive performance. These findings suggest that, despite long-term ART suppression, CNS memory B cells show suppressed antiviral pathways but increased antigen experience and trafficking, indicating dysregulated CNS immune surveillance and positioning them as key contributors to HIV-associated neuroimmune dysfunction.

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