首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Heat shock protein 27 overexpression in CHO cells modulates apoptosis pathways and delays activation of caspases to improve recombinant monoclonal antibody titre in fed-batch bioreactors
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Heat shock protein 27 overexpression in CHO cells modulates apoptosis pathways and delays activation of caspases to improve recombinant monoclonal antibody titre in fed-batch bioreactors

机译:CHO细胞中的热休克蛋白27过表达调节细胞凋亡途径并延迟胱天蛋白酶的活化,以改善分批补料生物反应器中的重组单克隆抗体效价

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摘要

CHO cells are major production hosts for recombinant biologics including the rapidly expanding recombinant monoclonal antibodies (mAbs). Heat shock protein 27 (HSP27) expression was observed to be down-regulated towards the late-exponential and stationary phase of CHO fed-batch bioreactor cultures, whereas HSP27 was found to be highly expressed in human pathological cells and reported to have anti-apoptotic functions. These phenotypes suggest that overexpression of HSP27 is a potential cell line engineering strategy for improving robustness of CHO cells. In this work, HSP27 was stably overexpressed in CHO cells producing recombinant mAb and the effects of HSP27 on cell growth, volumetric production titer and product quality were assessed. Concomitantly, HSP27 anti-apoptosis functions in CHO cells were investigated. Stably transfected clones cultured in fed-batch bioreactors displayed 2.2-fold higher peak viable cell density, delayed loss of culture viability by two days and 2.3-fold increase in mAb titer without affecting the N-glycosylation profile, as compared to clones stably transfected with the vector backbone. Co-immunoprecipitation studies revealed HSP27 interactions with Akt, pro-caspase 3 and Daxx and caspase activity profiling showed delayed increase in caspase 2, 3, 8 and 9 activities. These results suggest that HSP27 modulates apoptosis signaling pathways and delays caspase activities to improve performance of CHO fed-batch bioreactor cultures.
机译:CHO细胞是重组生物制剂(包括快速扩展的重组单克隆抗体(mAb))的主要生产宿主。观察到热休克蛋白27(HSP27)的表达向CHO补料分批生物反应器培养的指数后期和固定期下调,而HSP27在人类病理细胞中高表达并据报道具有抗凋亡作用功能。这些表型表明,HSP27的过表达是提高CHO细胞健壮性的潜在细胞系工程策略。在这项工作中,HSP27在产生重组mAb的CHO细胞中稳定地过表达,并评估了HSP27对细胞生长,体积生产滴度和产品质量的影响。同时,研究了CHO细胞中HSP27的抗凋亡功能。与稳定转染的克隆相比,在分批补料生物反应器中培养的稳定转染的克隆显示出最高的活细胞峰值密度高2.2倍,培养活力的丧失延迟了两天,mAb滴度增加了2.3倍,而不会影响N-糖基化谱。向量主干。免疫共沉淀研究表明,HSP27与Akt,半胱天冬酶原3和Daxx相互作用,而半胱天冬酶活性分析显示半胱天冬酶2、3、8和9活性的延迟增加。这些结果表明,HSP27调节细胞凋亡信号通路并延迟caspase活性,以提高CHO分批补料生物反应器培养的性能。

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