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A Novel Triple-Mutant AAV6 Capsid Induces Rapid and Potent Transgene Expression in the Muscle and Respiratory Tract of Mice

机译:一种新的三重突变体Aav6衣壳在小鼠的肌肉和呼吸道中诱导快速和有效的转基因表达

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摘要

Gene therapy for the treatment of genetic disorders has demonstrated considerable therapeutic success in clinical trials. Among the most effective and commonly used gene delivery vectors are those based on adeno-associated virus (AAV). Despite these advances in clinical gene therapy, further improvements in AAV vector properties such as rapid intracellular processing and transgene expression, targeted transduction of therapeutically relevant cell types, and longevity of transgene expression, will render extension of such successes to many other human diseases. Engineering of AAV capsids continues to evolve the specificity and efficiency of AAV-mediated gene transfer. Here, we describe a triple AAV6 mutant, termed AAV6.2FF, containing F129L, Y445F, and Y731F mutations. AAV6.2FF yielded 10-fold greater transgene expression in lung than AAV6 after 21 days. Additionally, this novel capsid demonstrated 101-fold and 49-fold increased transgene expression in the muscle and lungs, respectively, 24 hr post vector delivery when compared with the parental AAV6. Furthermore, AAV6.2FF retains heparin sulfate binding capacity and displays a 10-fold increase in resistance to pooled immunoglobulin neutralization in vitro. The rapid and potent expression mediated by AAV6.2FF is ideally suited to applications such as vectored immunoprophylaxis, in which rapid transgene expression is vital for use during an outbreak response scenario. Keywords: AAV, AAV capsid, gene therapy, lung transduction, muscle transduction, vectored immunoprophylaxis
机译:遗传性疾病的治疗的基因治疗已经证明在临床试验中相当大的治疗成功。其中最有效和常用的基因递送载体是那些基于腺相关病毒(AAV)。尽管在临床基因治疗的这些进展,在AAV载体性能进一步改进,如快速细胞内加工和转基因表达,治疗相关的细胞类型的有针对性的转导,和转基因表达的寿命,将呈现这样的成功扩展到许多其它人类疾病。 AAV衣壳工程的不断发展AAV介导的基因转移的特异性和效率。在这里,我们描述了一个三重AAV6突变,称为AAV6.2FF,含有F129L,Y445F和Y731F突变。 AAV6.2FF后21天得到肺中比AAV6 10倍更大的转基因表达。另外,101倍和增加的转基因表达在肌肉和肺49倍,分别为24小时后载体递送与亲本相比AAV6当这种新颖的衣壳证明。此外,AAV6.2FF保留硫酸肝素结合能力并显示有10倍增加抵抗体外汇集免疫球蛋白中和。通过介导AAV6.2FF快速和有效的表达是非常适合的应用,诸如矢量免疫预防,其中快速转基因表达是至关重要的使用暴发响应情景中。关键词:AAV,AAV衣壳,基因治疗,肺传导,肌肉传导,免疫预防向量

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