基因敲除
机制(生物学)
结合
中枢神经系统
细胞生物学
化学
神经科学
生物
物理
生物化学
数学
细胞凋亡
数学分析
量子力学
作者
Alexander G. Sorets,Katrina R. Schwensen,Nora Francini,Andrew Kjar,Adam M Abdulrahman,Alena Shostak,Ketaki A. Katdare,Kathleen M. Schoch,Rebecca P. Cowell,Joshua Park,Alexander P. Ligocki,William E. Ford,Lissa Ventura-Antunes,Ella N. Hoogenboezem,Alex Prusky,Mark Castleberry,Danielle L. Michell,Timothy M. Miller,Kasey C. Vickers,Matthew Schrag,Craig L. Duvall,Ethan S. Lippmann
标识
DOI:10.1101/2024.06.09.598079
摘要
Short-interfering RNA (siRNA) has gained significant interest for treatment of neurological diseases by providing the capacity to achieve sustained inhibition of nearly any gene target. Yet, efficacious drug delivery throughout deep brain structures of the CNS remains a considerable hurdle for intrathecally administered therapeutics. We herein describe an albumin-binding lipid-siRNA conjugate that transports along meningeal and perivascular CSF pathways, leading to broad dispersion throughout the CNS parenchyma. We provide a detailed examination of the temporal kinetics of gene silencing, highlighting potent knockdown for up to five months from a single injection without detectable toxicity. Single-cell RNA sequencing further demonstrates gene silencing activity across diverse cell populations in the parenchyma and at brain borders, which may provide new avenues for neurological disease-modifying therapies.
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