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Mechanistic model for production of recombinant adeno-associated virus via triple transfection of HEK293 cells

机译:通过HEK293细胞三重转染生产重组腺相关病毒的机械模型

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摘要

Manufacturing of recombinant adeno-associated virus (rAAV) viral vectors remains challenging, with low yields and low full:empty capsid ratios in the harvest. To elucidate the dynamics of recombinant viral production, we develop a mechanistic model for the synthesis of rAAV viral vectors by triple plasmid transfection based on the underlying biological processes derived from wild-type AAV. The model covers major steps starting from exogenous DNA delivery to the reaction cascade that forms viral proteins and DNA, which subsequently result in filled capsids, and the complex functions of the Rep protein as a regulator of the packaging plasmid gene expression and a catalyst for viral DNA packaging. We estimate kinetic parameters using dynamic data from literature and in-house triple transient transfection experiments. Model predictions of productivity changes as a result of the varied input plasmid ratio are benchmarked against transfection data from the literature. Sensitivity analysis suggests that (1) the poorly coordinated timeline of capsid synthesis and viral DNA replication results in a low ratio of full virions in harvest, and (2) repressive function of the Rep protein could be impeding capsid production at a later phase. The analyses from the mathematical model provide testable hypotheses for evaluation and reveal potential process bottlenecks that can be investigated.
机译:重组腺相关病毒(RAAV)病毒载体的制造仍然具有挑战性,低产率和低充分:收获中的空衣壳比率。为了阐明重组病毒生产的动态,我们通过基于衍生自野生型AAV的底层生物学方法,为三元质粒转染合成rAAv病毒载体的机制模型。该模型涵盖从外源DNA递送到反应级联的主要步骤,所述反应级联形成病毒蛋白和DNA,随后导致填充的衣壳,以及REP蛋白作为包装质粒基因表达的调节剂和病毒催化剂的复合功能DNA包装。我们使用来自文献和内部三瞬态转染实验的动态数据来估计动力学参数。由于不同的输入质粒比的结果,生产率变化的模型预测与来自文献的转染数据有基准。敏感性分析表明(1)衣壳合成和病毒DNA复制的不良时间表与收获中的全部病毒粒子的低比率,(2)REP蛋白的抑制功能可以在后期抵抗衣壳生产。来自数学模型的分析提供了可测试的假设进行评估,并揭示可以调查的潜在过程瓶颈。

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