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双杆状病毒感染对使用单细胞 RNA-seq 生产 rAAV 时 Sf9 昆虫细胞转录组的影响。

Impact of dual-baculovirus infection on the Sf9 insect cell transcriptome during rAAV production using single-cell RNA-seq.

机构信息

IBET, Instituto de Biologia Experimental e Tecnológica, Oeiras, Portugal.

ITQB NOVA, Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Oeiras, Portugal.

出版信息

Biotechnol Bioeng. 2023 Sep;120(9):2588-2600. doi: 10.1002/bit.28377. Epub 2023 Apr 7.

Abstract

The insect cell-baculovirus expression vector system (IC-BEVS) has shown to be a powerful platform to produce complex biopharmaceutical products, such as recombinant proteins and virus-like particles. More recently, IC-BEVS has also been used as an alternative to produce recombinant adeno-associated virus (rAAV). However, little is known about the variability of insect cell populations and the potential effect of heterogeneity (e.g., stochastic infection process and differences in infection kinetics) on product titer and/or quality. In this study, transcriptomics analysis of Sf9 insect cells during the production of rAAV of serotype 2 (rAAV2) using a low multiplicity of infection, dual-baculovirus system was performed via single-cell RNA-sequencing (scRNA-seq). Before infection, the principal source of variability in Sf9 insect cells was associated with the cell cycle. Over the course of infection, an increase in transcriptional heterogeneity was detected, which was linked to the expression of baculovirus genes as well as to differences in rAAV transgenes (rep, cap and gfp) expression. Noteworthy, at 24 h post-infection, only 29.4% of cells enclosed all three necessary rAAV transgenes to produce packed rAAV2 particles, indicating limitations of the dual-baculovirus system. In addition, the trajectory analysis herein performed highlighted that biological processes such as protein folding, metabolic processes, translation, and stress response have been significantly altered upon infection. Overall, this work reports the first application of scRNA-seq to the IC-BEVS and highlights significant variations in individual cells within the population, providing insight into the rational cell and process engineering toward improved rAAV2 production in IC-BEVS.

摘要

昆虫细胞-杆状病毒表达载体系统(IC-BEVS)已被证明是生产复杂生物制药产品(如重组蛋白和病毒样颗粒)的强大平台。最近,IC-BEVS 也被用作生产重组腺相关病毒(rAAV)的替代方法。然而,对于昆虫细胞群体的可变性以及异质性(例如随机感染过程和感染动力学的差异)对产物滴度和/或质量的潜在影响知之甚少。在这项研究中,通过单细胞 RNA 测序(scRNA-seq)对 Sf9 昆虫细胞在使用低感染复数、双杆状病毒系统生产血清型 2 的 rAAV(rAAV2)时的转录组进行了分析。在感染之前,Sf9 昆虫细胞的主要变异性来源与细胞周期有关。在感染过程中,检测到转录异质性增加,这与杆状病毒基因的表达以及 rAAV 转基因(rep、cap 和 gfp)表达的差异有关。值得注意的是,在感染后 24 小时,只有 29.4%的细胞包含产生包装 rAAV2 颗粒所需的所有三个必要的 rAAV 转基因,这表明双杆状病毒系统存在局限性。此外,本文进行的轨迹分析强调,感染后蛋白质折叠、代谢过程、翻译和应激反应等生物学过程发生了显著改变。总的来说,这项工作首次将 scRNA-seq 应用于 IC-BEVS,并强调了群体中单个细胞的显著变化,为提高 IC-BEVS 中 rAAV2 的生产提供了对细胞和过程工程的深入了解。

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