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Modification of glucose and glutamine metabolism in hybridoma cells through metabolic engineering

机译:通过代谢工程改变杂交瘤细胞中葡萄糖和谷氨酰胺的代谢

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The present work describes the genetic modification of a hybridoma cell line with the aim to change its metabolic behaviour, particularly reducing the amounts of ammonia and lactate produced by the cells. The cellular excretion of ammonia was eliminated by transfection of a cloned glutamine synthetase gene. The metabolic characterisation of the transformed cell line includes the analysis of the changes introduced in its intracellular metabolic fluxes by means of a stoichiometric model. Furthermore, the reduction of lactate accumulation was attempted through an antisense mRNA approach, aiming to generate a rate limiting step in the glycolytic pathway, thus lowering the glucose consumption rate. The physiological results obtained with the transformed cells are discussed. A maximum reduction of about 47% in the glucose consumption rate was obtained for one of the transformations. However a main drawback was the lack of stability of the transformed cells
机译:本工作描述了杂交瘤细胞系的遗传修饰,旨在改变其代谢行为,特别是减少细胞产生的氨和乳酸的量。通过转染克隆的谷氨酰胺合成酶基因消除了氨的细胞排泄。转化细胞系的代谢特征包括通过化学计量模型分析其细胞内代谢通量中引入的变化。此外,尝试通过反义mRNA方法减少乳酸积累,目的是在糖酵解途径中产生限速步骤,从而降低葡萄糖消耗速率。讨论了用转化细胞获得的生理结果。对于其中一种转化,获得了葡萄糖消耗速率的最大降低约47%。然而,主要缺点是转化细胞缺乏稳定性

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