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AAV9-mediated central nervous system-targeted gene delivery via cisterna magna route in mice.

机译:aaV9介导的中枢神经系统靶向基因通过小脑中的小脑延髓池途径递送。

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摘要

Current barriers to the use of adeno-associated virus serotype 9 (AAV9) in clinical trials for treating neurological disorders are its high expression in many off-target tissues such as liver and heart, and lack of cell specificity within the central nervous system (CNS) when using ubiquitous promoters such as human cytomegalovirus (CMV) or chicken-β-actin hybrid (CAG). To enhance targeting the transgene expression in CNS cells, self-complementary (sc) AAV9 vectors, scAAV9-GFP vectors carrying neuronal Hb9 and synapsin 1, and nonspecific CMV and CAG promoters were constructed. We demonstrate that synapsin 1 and Hb9 promoters exclusively targeted neurons in vitro, although their strengths were up to 10-fold lower than that of CMV. In vivo analyses of mouse tissue after scAAV9-GFP vector delivery via the cisterna magna revealed a significant advantage of synapsin 1 promoter over both Hb9 variants in targeting neurons throughout the brain, since Hb9 promoters were driving gene expression mainly within the motor-related areas of the brain stem. In summary, this study demonstrates that cisterna magna administration is a safe alternative to intracranial or intracerebroventricular vector delivery route using scAAV9, and introduces a novel utility of the Hb9 promoter for the targeted gene expression for both in vivo and in vitro applications.
机译:目前在临床试验中使用腺伴随病毒血清型9(AAV9)来治疗神经系统疾病的障碍是其在许多脱靶组织(如肝脏和心脏)中的高表达,以及在中枢神经系统(CNS)中缺乏细胞特异性),当使用无处不在的启动子时,例如人巨细胞病毒(CMV)或鸡β-肌动蛋白杂种(CAG)。为了增强在CNS细胞中靶向转基因表达,构建了自互补(sc)AAV9载体,携带神经元Hb9和突触蛋白1的scAAV9-GFP载体以及非特异性CMV和CAG启动子。我们证明突触蛋白1和Hb9启动子专门针对体外神经元,尽管它们的强度比CMV低10倍。经由大水罐递送scAAV9-GFP载体后对小鼠组织的体内分析显示,突触蛋白1启动子相对于两种Hb9变体在靶向整个大脑神经元方面具有显着优势,因为Hb9启动子主要驱动基因的运动相关区域内的表达。脑干。总而言之,这项研究表明,使用scAAV9,大水罐罐管理是颅内或脑室内载体递送途径的安全替代方法,并引入了Hb9启动子的新型效用,可用于体内和体外靶向基因表达。

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