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The impact of process temperature on mammalian cell lines and the implications for the production of recombinant proteins in CHO cells

机译:工艺温度对哺乳动物细胞系的影响及其对CHO细胞中重组蛋白生产的影响

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摘要

The use of a temperature-shift to subphysiological temperatures (<37°C) during the culturing of mammalian cell lines engineered to produce a recombinant protein is widely utilized. The effect of such a temperature shift on both the cellular responses and recombinant protein yield is not uniform and is both cell- and product-specific. Despite this, the understanding of the cellular responses to mild subphysiological temperature (27-35degC) culturing has developed markedly over the last decade and, as such, opportunities exist to harness this knowledge to further improve product yields and quality at subphysiological temperatures. In this review we describe the mammalian cell response to mild subphysiological temperature, the effects on recombinant protein production under such conditions, those mechanisms that appear to underpin increases in productivity at such temperatures, and potential future innovations and directions that may further enhance the use of such conditions during bioprocessing of recombinant protein products.
机译:在工程改造为生产重组蛋白的哺乳动物细胞系的培养过程中,使用温度转移至亚生理温度(<37°C)的方法得到了广泛利用。这种温度变化对细胞应答和重组蛋白产量的影响是不均匀的,并且对细胞和产物都是特异性的。尽管如此,在过去的十年中,对细胞对轻度亚生理温度(27-35degC)培养反应的理解有了显着发展,因此,存在利用这些知识进一步提高亚生理温度下产品产量和质量的机会。在这篇综述中,我们描述了哺乳动物细胞对温和的亚生理温度的反应,在这种条件下对重组蛋白生产的影响,在这种温度下似乎支持生产力提高的那些机制,以及可能进一步增强对氟尿嘧啶的使用的潜在未来创新和方向。重组蛋白产品生物加工过程中的此类条件。

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