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Cre-dependent selection yields AAV variants for widespread gene transfer to the adult brain

机译:Cre依赖性选择产生AAV变体,可将基因广泛转移到成年大脑

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摘要

Recombinant adeno-associated viruses (rAAVs) are commonly used vehicles for in vivo gene transfer. However, the tropism repertoire of naturally occurring AAVs is limited, prompting a search for novel AAV capsids with desired characteristics. Here we describe a capsid selection method, called Cre recombination–based AAV targeted evolution (CREATE), that enables the development of AAV capsids that more efficiently transduce defined Cre-expressing cell populations in vivo. We use CREATE to generate AAV variants that efficiently and widely transduce the adult mouse central nervous system (CNS) after intravenous injection. One variant, AAV-PHP.B, transfers genes throughout the CNS with an efficiency that is at least 40-fold greater than that of the current standard, AAV9, and transduces the majority of astrocytes and neurons across multiple CNS regions. In vitro, it transduces human neurons and astrocytes more efficiently than does AAV9, demonstrating the potential of CREATE to produce customized AAV vectors for biomedical applications.
机译:重组腺相关病毒(rAAVs)是体内基因转移的常用载体。但是,天然存在的AAV的向向性库受到限制,这促使人们寻找具有所需特征的新型AAV衣壳。在这里,我们描述了一种衣壳选择方法,称为基于Cre重组的AAV靶向进化(CREATE),它能够开发AAV衣壳,从而更有效地转导体内表达Cre的表达细胞群体。我们使用CREATE生成AAV变异体,该变异体可以在静脉注射后有效地广泛地转导成年小鼠中枢神经系统(CNS)。一种变体AAV-PHP.B以比当前标准AAV9至少高40倍的效率在整个CNS中转移基因,并跨多个CNS区域转导大多数星形胶质细胞和神经元。在体外,它比AAV9更有效地转导人神经元和星形胶质细胞,证明了CREATE生产用于生物医学应用的定制AAV载体的潜力。

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