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Caspase activation, sialidase release and changes in sialylation pattern of recombinant human erythropoietin produced by CHO cells in batch and fed-batch cultures

机译:分批和分批培养的CHO细胞产生的重组人促红细胞生成素的半胱天冬酶活化,唾液酸酶释放和唾液酸化模式的变化

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The activation of caspases represents a crucial turning point during a batch or a fed-batch culture of mammalian cells. It not only affects the quantity but also the quality of the recombinant glycoprotein produced. In this study, the activation of various caspases, the release of intracellular sialidase and the changes in sialylation pattern of a recombinant product, erythropoietin (EPO), in the culture medium were analyzed in both batch and fed-batch cultures. In both setups, all caspase activities peaked at the culture time point at which decline of cell viability was most pronounced. In addition, the release of intracellular lactate dehydrogenase (LDH) was also tracked during these cultures. The increase in LDH activity in the medium coincided with the increase of intracellular caspase activities, the release of sialidase and the observed decline in cell viability, suggesting that the LDH activity in the medium can be used as an indirect indicator of apoptotic cell death in bioreactors. Isoelectric focusing (IEF) coupled with double blotting was employed to analyze the changes in sialylation pattern of the recombinant EPO. This assay resulted in a prompt resolution of secreted EPO isoforms in a time course format. IEF profile of batch culture showed relatively consistent product sialylation compared to fed-batch culture, which showed gradual band shifts towards the isoforms with fewer sialic acid as the culture progressed. These data provided a guideline for the optimal time point to terminate the culture and collect products in batch and fed-batch cultures.
机译:半胱天冬酶的激活代表了哺乳动物细胞的分批或补料分批培养过程中的关键转折点。它不仅影响生产的重组糖蛋白的数量,而且影响其质量。在这项研究中,在分批和补料分批培养中均分析了培养基中各种胱天蛋白酶的活化,细胞内唾液酸酶的释放以及重组产物促红细胞生成素(EPO)的唾液酸化模式的变化。在这两种设置中,所有半胱天冬酶活性都在培养时间点达到峰值,此时细胞活力的下降最为明显。另外,在这些培养过程中还追踪了细胞内乳酸脱氢酶(LDH)的释放。培养基中LDH活性的增加与细胞内caspase活性的增加,唾液酸酶的释放以及观察到的细胞活力的下降相吻合,这表明培养基中LDH的活性可以用作生物反应器中凋亡细胞死亡的间接指标。 。等电聚焦(IEF)结合双印迹被用来分析重组EPO的唾液酸化模式的变化。该测定法以时程格式迅速解析了分泌的EPO亚型。与分批补料培养相比,分批培养的IEF谱显示出相对一致的产物唾液酸化,随着培养的进行,唾液酸逐渐向同种型转移。这些数据为终止培养并收集分批和补料分批培养的产品的最佳时间点提供了指导。

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