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◆ Bioorganic chemistry2026-09-13

Lipid-conjugated siRNA targeting SARM1 enables CNS silencing and mitigates alzheimer-like phenotypes.

Ying Cai, Qiongqiong Hou, Zihui Cheng, Yong Cheng, Enhua Zhang, Yizhe Li, Xiaojuan Zhang, Can Wang, Tianwen Hu, Guanghui Tian, Wei Zheng, Jingshan Shen

原始摘要(英文原文)· Original abstract
RNA interference (RNAi) therapeutics have achieved clinical success in liver disease, but their application to central nervous system (CNS) disorders remains limited. Here, we developed a lipid-conjugated siRNA to silence sterile alpha and TIR motif-containing protein 1 (SARM1), a key executor of axon degeneration associated with neuroinflammatory injury, and evaluated it in an Alzheimer-like model. siRNAs targeting conserved regions of human SARM1 and mouse Sarm1 were designed and screened in neural cells, and C16 lipid conjugation together with a 5'-(E)-vinylphosphonate (5'-VP) modification was used to support in vivo delivery. In mice, intracisterna magna (ICM) administration reduced Sarm1 mRNA in the hippocampus at the two-week time point. In the intracerebroventricular streptozotocin (STZ-ICV) model, two ICM doses of VD07C attenuated hyperlocomotion and partially improved selected spatial-memory-related endpoints. VD07C also reduced hippocampal SARM1 protein and cADPR, increased NAD+, and was associated with lower p-Tau, glial activation markers, and NF-κB/TNF-α expression. These findings provide convergent evidence of molecular and functional target engagement and support further evaluation of lipid-conjugated SARM1 siRNAs in progressive neurodegeneration models.
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Lipid-conjugated siRNA targeting SARM1 enables CNS silencing and mitigates alzheimer-like phenotypes. — 科研速览 Science Skim