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首页> 外文期刊>Frontiers in Neuroanatomy >Adeno-Associated Viral Vectors Serotype 8 for Cell-Specific Delivery of Therapeutic Genes in the Central Nervous System
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Adeno-Associated Viral Vectors Serotype 8 for Cell-Specific Delivery of Therapeutic Genes in the Central Nervous System

机译:腺相关病毒载体血清型8用于中枢神经系统中治疗基因的细胞特异性递送

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Adeno-associated viruses (AAVs) have become highly promising tools for research and clinical applications in the central nervous system (CNS). However, specific delivery of genes to the cell type of interest is essential for the success of gene therapy and therefore a correct selection of the promoter plays a very important role. Here, AAV8 vectors carrying enhanced green fluorescent protein (eGFP) as reporter gene under the transcriptional control of different CNS-specific promoters were used and compared with a strong ubiquitous promoter. Since one of the main limitations of AAV-mediated gene delivery lies in its restricted cloning capacity, we focused our work on small-sized promoters. We tested the transduction efficacy and specificity of each vector after stereotactic injection into the mouse striatum. Three glia-specific AAV vectors were generated using two truncated forms of the human promoter for glial fibrillar acidic protein (GFAP) as well as a truncated form of the murine GFAP promoter. All three vectors resulted in predominantly glial expression; however we also observed eGFP expression in other cell-types such as oligodendrocytes, but never in neurons. In addition, robust and neuron-specific eGFP expression was observed using the minimal promoters for the neural protein BM88 and the neuronal nicotinic receptor β2 (CHRNB2). In summary, we developed a set of AAV vectors designed for specific expression in cells of the CNS using minimal promoters to drive gene expression when the size of the therapeutic gene matters.
机译:adeno相关病毒(AAV)已成为中枢神经系统(CNS)中的研究和临床应用的高度有希望的工具。然而,对细胞类型感兴趣的基因的特异性递送对于基因治疗的成功至关重要,因此正确选择的启动子起着非常重要的作用。这里,使用在不同CNS特异性启动子对不同CNS特异性启动子的转录控制下作为报告基因的AAV8载体被用于与不同的CNS特异性启动子的转录基因进行比较。与强普遍的启动子进行比较。由于AAV介导的基因递送的主要局限性之一在于其受限制的克隆能力,我们将我们的工作重点关注小型启动子。我们在立体定向注射到小鼠纹状体后测试了每个载体的转导功效和特异性。使用两种截头形式的人启动子生成三种细胞特异性AAV载体,用于胶质纤维酸性蛋白(GFAP)以及鼠GFAP启动子的截短形式。所有三个载体主要导致胶质表达。然而,我们还观察到EGFP在其他细胞类型中的EGFP表达,例如少突胶质细胞,但从未在神经元中。此外,使用神经蛋白BM88和神经元烟碱受体β2(CHRNB2)的最小启动子观察到鲁棒和神经元特异性EGFP表达。总之,我们开发了一组设计用于CNS细胞中的特异性表达的AAV载体,当治疗基因的尺寸很小时,使用最小的启动子在CNS的细胞中进行特异性表达。

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