RNA Therapeutics Institute and.
Department of Radiology, New England Center for Stroke Research, University of Massachusetts Medical School, Worcester, Massachusetts, USA.
JCI Insight. 2021 Dec 22;6(24):e152203. doi: 10.1172/jci.insight.152203.
siRNAs comprise a class of drugs that can be programmed to silence any target gene. Chemical engineering efforts resulted in development of divalent siRNAs (di-siRNAs), which support robust and long-term efficacy in rodent and nonhuman primate brains upon direct cerebrospinal fluid (CSF) administration. Oligonucleotide distribution in the CNS is nonuniform, limiting clinical applications. The contribution of CSF infusion placement and dosing regimen on relative accumulation, specifically in the context of large animals, is not well characterized. To our knowledge, we report the first systemic, comparative study investigating the effects of 3 routes of administration - intrastriatal (i.s.), i.c.v., and intrathecal catheter to the cisterna magna (ITC) - and 2 dosing regimens - single and repetitive via an implanted reservoir device - on di-siRNA distribution and accumulation in the CNS of Dorset sheep. CSF injections (i.c.v. and ITC) resulted in similar distribution and accumulation across brain regions. Repeated dosing increased homogeneity, with greater relative deep brain accumulation. Conversely, i.s. administration supported region-specific delivery. These results suggest that dosing regimen, not CSF infusion placement, may equalize siRNA accumulation and efficacy throughout the brain. These findings inform the planning and execution of preclinical and clinical studies using siRNA therapeutics in the CNS.
siRNAs 是一类可以被编程沉默任何靶基因的药物。化学工程的努力导致了二价 siRNAs(di-siRNAs)的发展,直接脑脊髓液(CSF)给药后,在啮齿动物和非人类灵长类动物大脑中支持强大和长期的疗效。寡核苷酸在中枢神经系统中的分布不均匀,限制了临床应用。CSF 输注位置和剂量方案对相对积累的影响,特别是在大型动物的情况下,尚未得到很好的描述。据我们所知,我们报告了第一项系统的、比较研究,调查了 3 种给药途径——纹状体内(i.s.)、脑室内(i.c.v.)和鞘内导管到枕骨大孔(ITC)——和 2 种给药方案——通过植入式储液器进行单次和重复给药——对 Dorset 绵羊中枢神经系统中 di-siRNA 分布和积累的影响。CSF 注射(i.c.v. 和 ITC)导致大脑区域的分布和积累相似。重复给药增加了均匀性,深部大脑的相对积累增加。相反,i.s. 给药支持特定区域的递送。这些结果表明,给药方案而不是 CSF 输注位置可能会使大脑中的 siRNA 积累和疗效均等化。这些发现为使用 siRNA 治疗剂在中枢神经系统中进行临床前和临床研究的规划和执行提供了信息。