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Inducible product gene expression technology tailored to bioprocess engineering

机译:专为生物工艺工程量身定制的诱导型产品基因表达技术

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Bioprocess engineering has developed as a discipline to design optimal culture conditions and bioreactor operation protocols for production cell lines engineered for constitutive expression of desired protein Pharmaceuticals. With the advent of heterologous gene regulation systems it has become possible to fine-tune expression of difficult-to-produce protein Pharmaceuticals to optimal levels and to conditionally engineer cell metabolism for the best production performance. However, most of the small-molecules used to trigger expression of product or metabolic engineering product genes are incompatible with downstream processing regulations or process economics. Recent progress in product gene control design has resulted in the development of bioprocess-compatible regulation systems, which are responsive to physical parameters such as temperature or physiologic trigger molecules that are either an inherent part of host cell metabolism or intrinsic components of licensed protein-free cell culture media, such as redox status, vitamin H and gaseous acetaldehyde. While all of these systems have been shown to fine-tune product gene expression independent of the host cell metabolism some of them can be plugged into metabolic networks to capture critical physiologic parameters and convert them into an optimal production response. Assembly of individual product gene control modalities into synthetic networks has recently enabled construction of autonomously regulated time-delay or cell density-sensitive gene circuits, which trigger population-wide induction of product gene expression at a predefined time or culture density. We provide a comprehensive overview on the latest developments in the design of bioprocess-compatible product gene control systems.
机译:生物过程工程学已经发展成为一门学科,可以设计出最佳的培养条件和生物反应器操作规程,以生产用于所需蛋白质药物组成型表达的生产细胞系。随着异源基因调控系统的出现,将难以生产的蛋白质药物的表达微调至最佳水平并有条件地工程化细胞代谢以获得最佳生产性能已成为可能。但是,用于触发产物或代谢工程产物基因表达的大多数小分子与下游加工法规或工艺经济学不兼容。产品基因控制设计的最新进展已导致开发出与生物过程兼容的调节系统,该系统可响应温度或生理触发分子等物理参数,这些分子既可以是宿主细胞代谢的固有部分,也可以是无许可的无蛋白质的固有成分细胞培养基,例如氧化还原状态,维生素H和气态乙醛。尽管所有这些系统都显示出可以独立于宿主细胞代谢来微调产物基因的表达,但其中一些系统可以插入代谢网络中,以捕获关键的生理参数并将其转化为最佳的生产反应。单个产品基因控制模式组装到合成网络中,最近使得能够构建自主调节的时延或细胞密度敏感基因电路,该电路在预定的时间或培养密度下触发全人群的产品基因表达诱导。我们提供了与生物过程兼容的产品基因控制系统设计的最新进展的全面概述。

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