首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Development of Patient-specific AAV Vectors After Neutralizing Antibody Selection for Enhanced Muscle Gene Transfer
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Development of Patient-specific AAV Vectors After Neutralizing Antibody Selection for Enhanced Muscle Gene Transfer

机译:中和抗体选择增强肌肉基因转移后,患者特异性AAV载体的发展。

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A major hindrance in gene therapy trials with adeno-associated virus (AAV) vectors is the presence of neutralizing antibodies (NAbs) that inhibit AAV transduction. In this study, we used directed evolution techniques in vitro and in mouse muscle to select novel NAb escape AAV chimeric capsid mutants in the presence of individual patient serum. AAV mutants isolated in vitro escaped broad patient-specific NAb activity but had poor transduction ability in vivo. AAV mutants isolated in vivo had enhanced NAb evasion from cognate serum and had high muscle transduction ability. More importantly, structural modeling identified a 100 amino acid motif from AAV6 in variable region (VR) III that confers this enhanced muscle tropism. In addition, a predominantly AAV8 capsid beta barrel template with a specific preference for AAV1/AAV9 in VR VII located at threefold symmetry axis facilitates NAb escape. Our data strongly support that chimeric AAV capsids composed of modular and nonoverlapping domains from various serotypes are capable of evading patient-specific NAbs and have enhanced muscle transduction.
机译:腺相关病毒(AAV)载体在基因治疗试验中的主要障碍是存在抑制AAV转导的中和抗体(NAb)。在这项研究中,我们在体外和小鼠肌肉中使用了定向进化技术,以在个体患者血清存在的情况下选择新型的NAb逃逸AAV嵌合衣壳突变体。体外分离的AAV突变体逃避了广泛的患者特异性NAb活性,但体内的转导能力较弱。体内分离的AAV突变体增强了从同源血清逃避NAb的能力,并具有很高的肌肉转导能力。更重要的是,结构建模从AAV6的可变区(VR)III中识别出100个氨基酸基序,赋予了这种增强的肌肉向性。此外,位于三重对称轴上的VR VII中的AAV8衣壳β桶型桶形模板尤其具有AAV1 / AAV9的特殊偏好,可促进NAb逃逸。我们的数据强烈支持由各种血清型的模块化和非重叠域组成的嵌合AAV衣壳能够规避患者特异性的NAb,并增强了肌肉的传导。

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