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◆ Molecular therapy. Nucleic acids2026-09-08

In vivo genome editing of central nervous system SIV reservoirs in ART-suppressed rhesus macaques.

Hong Liu, Shuren Liao, Chen Chen, Wenwen Huo, Zahra Safaei, Angela Rocchi, Yuru Huang, Ilker K Sariyer, Mackenzie E Collins, Jill M Lawrence, Will Dampier, Michael R Nonnemacher, Brian Wigdahl, Tricia H Burdo, Jennifer Gordon, Mark Lewis, Cheri A Lee, Kamel Khalili

原始摘要(英文原文)· Original abstract
Latent human immunodeficiency virus type 1 (HIV-1) reservoirs in the central nervous system (CNS) may sustain viral persistence and neuroinflammation contributing to HIV-associated neurocognitive disorders (HAND) despite suppressive ART. AAV9-delivered CRISPR has successfully edited SIV proviral DNA in peripheral tissues with acceptable safety profiles, but the extent of in vivo genome editing in the brain remains unclear. Using SIV-infected rhesus macaques, we mapped intact proviral DNA across CNS regions and tested systemic AAV9-CRISPR-Cas9 targeting conserved sites within Ψ packaging signal and Gag region. Ten adult rhesus macaques were infected with genetically barcoded SIVmac239, suppressed with ART, then randomized to receive intravenous AAV9-SaCas9 with dual gRNAs (Ψ + Gag) or a Cas9-only control. At necropsy after viral rebound, SIV genomes were detected in multiple brain regions as well as lymphoid tissues, confirming the CNS as a persistent reservoir during ART. Barcode analysis revealed region-specific patterns consistent with compartmentalized CNS persistence. In CRISPR-treated animals, proviral editing was measurable across anatomically distinct CNS sites. These findings demonstrate that intact and potentially replication-competent virus persists in the primate brain under ART and that systemic AAV9-CRISPR can reach and edit proviral DNA in this sanctuary, supporting genome editing as a strategy toward durable remission of CNS reservoirs.
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In vivo genome editing of central nervous system SIV reservoirs in ART-suppressed rhesus macaques. — 科研速览 Science Skim