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同源重组为基于转座子的系统提供了优势,用于生成重组杆状病毒以用于腺相关病毒载体生产。

Homologous Recombination Offers Advantages over Transposition-Based Systems to Generate Recombinant Baculovirus for Adeno-Associated Viral Vector Production.

机构信息

CHU Nantes, INSERM UMR1089, University of Nantes, Nantes, 44200, France.

Ocular Genomics Institute, Department of Ophthalmology, Harvard Medical School, Boston, MA, 02114, USA.

出版信息

Biotechnol J. 2021 Jan;16(1):e2000014. doi: 10.1002/biot.202000014. Epub 2020 Nov 16.

Abstract

Viral vectors have a great potential for gene delivery, but manufacturing is a big challenge for the industry. The baculovirus-insect cell is one of the most scalable platforms to produce recombinant adeno-associated virus (rAAV) vectors. The standard procedure to generate recombinant baculovirus is based on Tn7 transposition which is time-consuming and suffers technical constraints. Moreover, baculoviral sequences adjacent to the AAV ITRs are preferentially encapsidated into the rAAV vector particles. This observation raises concerns about safety due to the presence of bacterial and antibiotic resistance coding sequences with a Tn7-mediated system for the construction of baculoviruses reagents. Here, a faster and safer method based on homologous recombination (HR) is investigated. First, the functionality of the inserted cassette and the absence of undesirable genes into HR-derived baculoviral genomes are confirmed. Strikingly, it is found that the exogenous cassette showed increased stability over passages when using the HR system. Finally, both materials generated high rAAV vector genome titers, with the advantage of the HR system being exempted from undesirable bacterial genes which provides an additional level of safety for its manufacturing. Overall, this study highlights the importance of the upstream process and starting biologic materials to generate safer rAAV biotherapeutic products.

摘要

病毒载体在基因传递方面具有巨大的潜力,但制造是该行业面临的一大挑战。杆状病毒-昆虫细胞是生产重组腺相关病毒(rAAV)载体的最具可扩展性的平台之一。生成重组杆状病毒的标准程序基于 Tn7 转座,这既耗时又受到技术限制。此外,与 AAV ITR 相邻的杆状病毒序列优先被包装到 rAAV 载体颗粒中。由于 Tn7 介导的杆状病毒试剂构建系统中存在细菌和抗生素抗性编码序列,这一观察结果引起了人们对安全性的关注。在这里,研究了一种基于同源重组(HR)的更快、更安全的方法。首先,确认了插入盒的功能和 HR 衍生杆状病毒基因组中不存在不良基因。引人注目的是,当使用 HR 系统时,外源盒在外体中的稳定性随着传代而增加。最后,两种材料都产生了高 rAAV 载体基因组滴度,HR 系统的优势在于没有不良细菌基因,为其生产提供了额外的安全水平。总的来说,这项研究强调了上游工艺和起始生物材料的重要性,以生成更安全的 rAAV 生物治疗产品。

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