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在生物反应器培养期间 CHO 细胞糖组学变化的特征描述和定量分析。

The characterization and quantitation of glycomic changes in CHO cells during a bioreactor campaign.

机构信息

Biogen Idec, 14 Cambridge Center, Cambridge, Massachusetts 02142, USA.

出版信息

Biotechnol Bioeng. 2012 Dec;109(12):3007-17. doi: 10.1002/bit.24590. Epub 2012 Jul 18.

DOI:10.1002/bit.24590
PMID:22752974
Abstract

Within the biotechnology industry there is a continuous drive to better and more fully understand the biopharmaceutical process in order to achieve better process control. A method to monitor and quantitate glycomic changes that occur in CHO cells during a bioreactor campaign could help to address this. The goal of the method presented here is to provide data that may help to understand the changes in glycosylation that are occurring, within the cell, to proteins other than the expressed biotherapeutic. The method involves the lysing of cells to gain access to intracellular proteins. The expressed biotherapeutic is specifically removed by affinity chromatography, while the remaining proteins are subjected to deglycosylation by treatment with PNGase F. The released glycans are derivatized with isotopic tags, and quantitative analysis by MALDI-TOF MS is performed. The MALDI-TOF MS method allows for the simultaneous analysis of both neutral and sialylated glycans, displays a linear dynamic range over two orders of magnitude for both neutral and sialylated glycans and achieves sub-picomolar sensitivity. This method may yield valuable information that gives further insight into the inner-workings of CHO cells, potentially taking another step towards fully understanding and controlling the biopharmaceutical process.

摘要

在生物技术行业,人们一直致力于更好、更全面地了解生物制药工艺,以实现更好的过程控制。一种监测和定量 CHO 细胞在生物反应器培养过程中糖基化变化的方法可以帮助解决这个问题。这里介绍的方法的目的是提供可能有助于理解除表达的治疗性蛋白以外的细胞内蛋白的糖基化变化的数据。该方法涉及裂解细胞以获得细胞内蛋白。通过亲和层析特异性去除表达的治疗性蛋白,而剩余的蛋白则通过用 PNGase F 处理进行去糖基化。释放的聚糖用同位素标记物衍生化,并通过 MALDI-TOF MS 进行定量分析。MALDI-TOF MS 方法允许同时分析中性和唾液酸化聚糖,对中性和唾液酸化聚糖显示出两个数量级的线性动态范围,并实现亚皮摩尔的灵敏度。该方法可能提供有价值的信息,进一步深入了解 CHO 细胞的内部运作,有可能朝着全面理解和控制生物制药工艺又迈出了一步。

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