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Transcriptional profiling of batch and fed-batch protein-free 293-HEK cultures.

机译:分批和补料分批无蛋白293-HEK培养物的转录谱分析。

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Dynamic nutrient feeding to control glutamine at low levels in protein-free fed-batch cultures of 293-human embryonic kidney (HEK) cells achieved cell concentrations of 6 x 10(6) cells/ml. This represented a 4-fold improvement in cell concentration compared to batch cultures. Reduction in glutamine and glucose consumption, as well as lactate and ammonia production, were also observed in these fed-batch cultures. High virus production titers of 3 x 10(11) pfu/ml were achieved in fed-batch cultures which were 10,000-fold higher than batch cultures. An investigation of the transcriptional regulation of the metabolic changes associated with the batch and the low-glutamine fed-batch cultures using DNA microarray was conducted. This analysis provides better understanding of the transcriptional regulatory mechanism resulting in the observed physiological changes. Transcriptional profiling of cells from the mid-exponential, late exponential and stationary phases of both the batch and fed-batch were undertaken using an 18,000 element human chip. Transcriptional profiles were ontologically classified to provide a global view of the genetic changes. Furthermore, a pathway-oriented analysis focusing on cellular metabolism was conducted to reveal the dynamic regulation of genes related to amino acid metabolism, tRNA synthetases, TCA cycle, electron transport chain and glycolysis.
机译:在293人胚肾(HEK)细胞的无蛋白分批补料培养中,动态营养补料以低水平控制谷氨酰胺,使细胞浓度达到6 x 10(6)细胞/ ml。与分批培养相比,这表示细胞浓度提高了4倍。在这些分批补料的培养物中,还观察到谷氨酰胺和葡萄糖消耗的减少以及乳酸和氨的产生。在分批补料培养中,病毒生产滴度达到3 x 10(11)pfu / ml,比分批培养高10,000倍。使用DNA芯片对与批次和低谷氨酰胺分批补料培养物相关的代谢变化的转录调控进行了研究。该分析提供了对导致观察到的生理变化的转录调控机制的更好理解。使用18,000个元素的人类芯片对批次和补料批次的中期指数,晚期指数和固定期细胞进行转录分析。转录概况进行了本体分类,以提供遗传变化的全局视图。此外,进行了针对细胞代谢的面向途径的分析,以揭示与氨基酸代谢,tRNA合成,TCA循环,电子转运链和糖酵解相关的基因的动态调节。

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