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DNA Minicircle Technology Improves Purity of Adeno-associated Viral Vector Preparations

机译:DNA minicircle技术提高了腺相关病毒载体制剂的纯度

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摘要

Adeno-associated viral (AAV) vectors are considered as one of the most promising delivery systems in human gene therapy. In addition, AAV vectors are frequently applied tools in preclinical and basic research. Despite this success, manufacturing pure AAV vector preparations remains a difficult task. While empty capsids can be removed from vector preparations owing to their lower density, state-of-the-art purification strategies as of yet failed to remove antibiotic resistance genes or other plasmid backbone sequences. Here, we report the development of minicircle (MC) constructs to replace AAV vector and helper plasmids for production of both, single-stranded (ss) and self-complementary (sc) AAV vectors. As bacterial backbone sequences are removed during MC production, encapsidation of prokaryotic plasmid backbone sequences is avoided. This is of particular importance for scAAV vector preparations, which contained an unproportionally high amount of plasmid backbone sequences (up to 26.1% versus up to 2.9% (ssAAV)). Replacing standard packaging plasmids by MC constructs not only allowed to reduce these contaminations below quantification limit, but in addition improved transduction efficiencies of scAAV preparations up to 30-fold. Thus, MC technology offers an easy to implement modification of standard AAV packaging protocols that significantly improves the quality of AAV vector preparations.
机译:腺相关病毒(AAV)载体被认为是人类基因治疗中最有希望的递送系统之一。此外,AAV载体是临床前和基础研究中经常使用的工具。尽管取得了成功,但是制造纯AAV载体制剂仍然是一项艰巨的任务。尽管空衣壳由于其较低的密度而可以从载体制备物中除去,但是目前最新的纯化策略仍未能除去抗生素抗性基因或其他质粒主链序列。在这里,我们报告了微圆(MC)构造的发展,以替代AAV载体和辅助质粒,以生产单链(ss)和自互补(sc)AAV载体。由于在MC生产过程中去除了细菌主链序列,因此避免了原核质粒主链序列的衣壳化。这对于s​​cAA​​V载体制剂特别重要,该制剂含有不成比例的大量质粒主链序列(高达26.1%,而高达2.9%(ssAAV))。用MC构建体替换标准包装质粒不仅可以将这些污染降低到定量限以下,而且还可以将scAAV制剂的转导效率提高多达30倍。因此,MC技术提供了一种易于实施的标准AAV包装协议的修改方法,可显着提高AAV载体制备的质量。

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