Deconstructing the Intercellular Interactome in Vascular Dementia with Focal Ischemia for Therapeutic Applications
收藏NIAID Data Ecosystem2026-05-10 收录
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https://www.ncbi.nlm.nih.gov/sra/SRP589506
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Vascular dementia (VaD), the second-leading cause of dementia, is primarily a white matter ischemic disease with no direct therapies. Cell-cell interactions within lesion sites dictate disease progression or repair. To elucidate key intercellular pathways, we employed a VaD mouse model with focal ischemia replicating many elements of the complex pathophysiology of human VaD, combined with transcriptomic and functional analyses. Integrating cell-type-specific mouse VaD transcriptomes and human VaD snRNA-Seq data, plus a custom ligand-receptor database (4,053 human and 2,032 mouse pairs), conserved dysregulated intercellular pathways in both species were identified. We demonstrate that two intercellular signaling systems, Serpine2-Lrp1 and CD39-A3AR, are disrupted in VaD. Reduced Serpine2 expression enhances oligodendrocyte progenitor cell (OPC) differentiation, promoting repair, while an A3AR-specific agonistâcurrently in clinical trials for psoriasisârestores tissue integrity and behavioral function in the VaD model. This study reveals intercellular signaling targets and provides a foundation for developing innovative therapies for VaD. Overall design: Cell-type specific RNA-Seq
创建时间:
2025-10-07



