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腺相关病毒的分子进化用于增强神经胶质细胞基因传递。

Molecular evolution of adeno-associated virus for enhanced glial gene delivery.

机构信息

Department of Chemical Engineering, Helen Wills Neuroscience Institute, The University of California, Berkeley, California 94720-1462, USA.

出版信息

Mol Ther. 2009 Dec;17(12):2088-95. doi: 10.1038/mt.2009.184. Epub 2009 Aug 11.

Abstract

The natural tropism of most viral vectors, including adeno-associated viral (AAV) vectors, leads to predominant transduction of neurons and epithelia within the central nervous system (CNS) and retina. Despite the clinical relevance of glia for homeostasis in neural tissue, and as causal contributors in genetic disorders such as Alzheimer's and amyotrophic lateral sclerosis, efforts to develop more efficient gene delivery vectors for glia have met with limited success. Recently, viral vector engineering involving high-throughput random diversification and selection has enabled the rapid creation of AAV vectors with valuable new gene delivery properties. We have engineered novel AAV variants capable of efficient glia transduction by employing directed evolution with a panel of four distinct AAV libraries, including a new semi-random peptide replacement strategy. These variants transduced both human and rat astrocytes in vitro up to 15-fold higher than their parent serotypes, and injection into the rat striatum yielded astrocyte transduction levels up to 16% of the total transduced cell population, despite the human astrocyte selection platform. Furthermore, one variant exhibited a substantial shift in tropism toward Müller glia within the retina, further highlighting the general utility of these variants for efficient glia transduction in multiple species within the CNS and retina.

摘要

大多数病毒载体(包括腺相关病毒[AAV]载体)的天然趋向性导致其主要转导中枢神经系统(CNS)和视网膜内的神经元和上皮细胞。尽管神经组织内的胶质对于维持内环境稳定具有临床相关性,并且在阿尔茨海默病和肌萎缩侧索硬化等遗传疾病中作为因果贡献者,但开发更有效的用于胶质的基因传递载体的努力仅取得了有限的成功。最近,涉及高通量随机多样化和选择的病毒载体工程已经能够快速创建具有有价值的新基因传递特性的 AAV 载体。我们通过使用包含四个不同 AAV 文库的面板进行定向进化,工程改造了能够有效转导胶质的新型 AAV 变体,包括一种新的半随机肽替换策略。这些变体在体外转导人源和大鼠星形胶质细胞的效率比其亲本血清型高 15 倍,并且即使在人星形胶质细胞选择平台上,向大鼠纹状体注射也能使星形胶质细胞的转导水平达到总转导细胞群体的 16%。此外,一种变体在视网膜内朝向 Müller 胶质的趋向性发生了实质性转变,进一步突出了这些变体在 CNS 和视网膜内多种物种中用于有效转导胶质的普遍适用性。

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