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Using a barcoded AAV capsid library to select for clinically relevant gene therapy vectors

机译:使用带条形码的AAV衣壳库选择临床相关的基因治疗载体

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摘要

While gene transfer using recombinant adeno-associated viral (rAAV) vectors has shown success in some clinical trials, there remain many tissues that are not well transduced. Because of the recent success in reprogramming islet-derived cells into functional β cells in animal models, we constructed 2 highly complex barcoded replication competent capsid shuffled libraries and selected for high-transducing variants on primary human islets. We describe the generation of a chimeric AAV capsid (AAV-KP1) that facilitates transduction of primary human islet cells and human embryonic stem cell–derived β cells with up to 10-fold higher efficiency compared with previously studied best-in-class AAV vectors. Remarkably, this chimeric capsid also enabled transduction of both mouse and human hepatocytes at very high levels in a humanized chimeric mouse model, thus providing a versatile vector that has the potential to be used in both preclinical testing and human clinical trials for liver-based diseases and diabetes.
机译:尽管使用重组腺相关病毒(rAAV)载体进行的基因转移在某些临床试验中已显示出成功,但仍有许多组织未得到很好的转导。由于最近在动物模型中成功地将胰岛来源的细胞重编程为功能性β细胞,我们构建了2个高度复杂的条形码复制能力衣壳改组文库,并选择了在人原代胰岛上进行高转导的变异体。我们描述了一种嵌合AAV衣壳(AAV-KP1)的产生,该衣壳与以前研究过的同类最佳AAV载体相比,能以高达10倍的高效率促进原代人胰岛细胞和人胚胎干细胞衍生的β细胞的转导。 。值得注意的是,这种嵌合衣壳还能够在人源化嵌合小鼠模型中以很高的水平转导小鼠和人类肝细胞,从而提供了一种多功能载体,具有用于基于肝疾病的临床前测试和人类临床试验的潜力和糖尿病。

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