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Direct Head-to-Head Evaluation of Recombinant Adeno-associated Viral Vectors Manufactured in Human versus Insect Cells

机译:在人与昆虫细胞中生产的重组腺相关病毒载体的直接头对头评估

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摘要

The major drawback of the Baculovirus/Sf9 system for recombinant adeno-associated viral (rAAV) manufacturing is that most of the Bac-derived rAAV vector serotypes, with few exceptions, demonstrate altered capsid compositions and lower biological potencies. Here, we describe a new insect cell-based production platform utilizing attenuated Kozak sequence and a leaky ribosome scanning to achieve a serotype-specific modulation of AAV capsid proteins stoichiometry. By way of example, rAAV5 and rAAV9 were produced and comprehensively characterized side by side with HEK293-derived vectors. A mass spectrometry analysis documented a 3-fold increase in both viral protein (VP)1 and VP2 capsid protein content compared with human cell-derived vectors. Furthermore, we conducted an extensive analysis of encapsidated single-stranded viral DNA using next-generation sequencing and show a 6-fold reduction in collaterally packaged contaminating DNA for rAAV5 produced in insect cells. Consequently, the re-designed rAAVs demonstrated significantly higher biological potencies, even in a comparison with HEK293-manufactured rAAVs mediating, in the case of rAAV5, 4-fold higher transduction of brain tissues in mice. Thus, the described system yields rAAV vectors of superior infectivity and higher genetic identity providing a scalable platform for good manufacturing practice (GMP)-grade vector production.
机译:用于重组腺相关病毒(rAAV)生产的杆状病毒/ Sf9系统的主要缺点是,除少数例外,大多数Bac衍生的rAAV载体血清型均显示衣壳成分发生变化,且生物学潜能较低。在这里,我们描述了一个新的基于昆虫细胞的生产平台,利用减毒的Kozak序列和泄漏核糖体扫描来实现AAV衣壳蛋白化学计量的血清型特异性调节。举例来说,产生了rAAV5和rAAV9,并与HEK293衍生的载体并列地全面表征。质谱分析表明,与人类细胞来源的载体相比,病毒蛋白(VP)1和VP2衣壳蛋白含量增加了3倍。此外,我们使用下一代测序技术对衣壳化的单链病毒DNA进行了广泛的分析,结果表明,在昆虫细胞中产生的rAAV5的附带包装的污染DNA降低了6倍。因此,重新设计的rAAV表现出显着更高的生物学效力,即使与HEK293生产的rAAV相比,在rAAV5的情况下,介导的小鼠脑组织转导也高出4倍。因此,所描述的系统产生了具有优良传染性和更高遗传特性的rAAV载体,为良好生产规范(GMP)级载体生产提供了可扩展的平台。

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