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Statistical modeling of cell-to-cell variability in viral infection during passaging in suspension cell culture: Application in Monte-Carlo simulation

机译:悬浮细胞培养中传代观病毒感染细胞对细胞变异性的统计学建模:在Monte-Carlo模拟中的应用

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摘要

Packaging during the passaging of viruses in cell cultures yields various phenotypes and is regulated by viral protein expression in infected cells. Although such a packaging mechanism has a profound effect in controlling the virus yield, little is known about the underlying statistical models followed by virus packaging and protein expression among cells infected with the virus. A predictive framework combining identification of the probability density function (PDF) based on log-likelihood and using the PDF for Monte-Carlo simulations is developed. The Birnbaum-Saunders distribution was found to be consistent with all three-virus packaging levels, including nucleocapsids/occlusion-derived virus (ODV), ODVs/polyhedra, and polyhedra/cell for both wild-type and genetically modified AcMNPV. Next, it was demonstrated that PDF fitting could be used to compare two viruses having distinctly different genetic configurations. Finally, the identified PDF can be incorporated in RNA synthesis parameters for baculovirus infection to predict the cell-to-cell variability in protein expression using Monte-Carlo simulations. The proposed tool can be used for the estimation of uncertainty in the kinetic parameter and prediction of cell-to-cell variability for other biological systems.
机译:在细胞培养物中的病毒传代期间包装产生各种表型,并受感染细胞中的病毒蛋白表达调节。虽然这种包装机制在控制病毒产量方面具有深远的影响,但是关于潜在的统计模型,随后是病毒包装和感染病毒的细胞的病毒包装和蛋白质表达几乎是知之甚少。开发了一种基于日志似然和使用PDF的概率密度函数(PDF)的预测框架,用于蒙特卡罗模拟的PDF。发现Birnbaum-Saunders分布与所有三病毒包装水平一致,包括野生型和遗传修饰的ACMNPV的核衣壳/闭塞病毒(ODV),ODV),ODVS / PolyheDra和Polyhedra / Cell。接下来,证明PDF配件可用于比较具有明显不同遗传配置的两种病毒。最后,鉴定的PDF可以掺入杆状病毒感染的RNA合成参数中,以预测使用Monte-Carlo模拟的蛋白质表达中的细胞对细胞变异。该拟议的工具可用于估计动力学参数中的不确定性和对其他生物系统的细胞对细胞变异性的预制。

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