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Chemical modification of the adeno-associated virus capsid to improve gene delivery

机译:腺相关病毒衣壳的化学修饰改善基因递送

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Gene delivery vectors based on adeno-associated virus (AAV) are highly promising due to several desirable features of this parent virus, including a lack of pathogenicity, efficient infection of dividing and non-dividing cells and sustained maintenance of the viral genome. However, the conclusion from clinical data using these vectors is that there is a need to develop new AAVs with a higher transduction efficiency and specificity for relevant target tissues. To overcome these limitations, we chemically modified the surface of the capsid of AAV vectors. These modifications were achieved by chemical coupling of a ligand by the formation of a thiourea functionality between the amino group of the capsid proteins and the reactive isothiocyanate motif incorporated into the ligand. This strategy does not require genetic engineering of the capsid sequence. The proof of concept was first evidenced using a fluorophore (FITC). Next, we coupled the N -acetylgalactosamine ligand onto the surface of the AAV capsid for asialoglycoprotein receptor-mediated hepatocyte-targeted delivery. Chemically-modified capsids also showed reduced interactions with neutralizing antibodies. Taken together, our findings reveal the possibility of creating a specific engineered platform for targeting AAVs via chemical coupling.
机译:由于该母体病毒的几种所需特征,基于腺相关病毒(AAV)的基因递送载体是高度的承诺,包括缺乏致病性,缺乏致病性,有效感染的分割和非分配细胞以及病毒基因组的持续维持。然而,使用这些载体的临床数据的结论是需要开发具有更高的转导效率和相关靶组织的特异性的新AAV。为了克服这些限制,我们化学修饰了AAV载体的衣壳的表面。通过在衣壳蛋白的氨基和掺入配体中的反应性异硫氰酸酯基序之间形成硫脲官能团来实现这些修饰。该策略不需要衣壳序列的基因工程。首先使用荧光团(FITC)证明概念证明。接下来,我们将N-乙酰甘乳酰胺配体偶联到AialoglycoLoticin受体介导的肝细胞靶向递送的AAV衣壳的表面上。化学改性的衣壳还显示出与中和抗体的相互作用降低。我们的调查结果一起揭示了通过化学偶联创建针对AAV的特定工程平台的可能性。

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