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谷氨酰胺限制对杂交瘤细胞生长、代谢和单抗生产的影响 被引量:8

Effect of Glutamine Limitation on Growth, Metabolism and MAb Production of Hybridoma Cells
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摘要 利用批培养和流加培养方式以及不同的流加培养成分,考察了谷氨酰胺限制对杂交瘤细胞生长、代谢和单抗生成的影响。谷氨酰胺限制降低了最大细胞密度和单抗比生产速率,说明谷氨酰胺限制阻碍了细胞生长和单抗生产。谷氨酰胺限制流加培养的YLac/Gluc和YLac/Cells高于批培养和谷氨酰胺非限制流加培养的,说明谷氨酰胺限制促进了葡萄糖向乳酸的生成,增强了葡萄糖的溢流代谢。与批培养和谷氨酰胺非限制流加培养相比,谷氨酰胺限制流加培养的氨和丙氨酸浓度及其比生成速率较低,而且YAmm/Gln高,YAla/Gln和YAla/Cells低,说明谷氨酰胺限制使得较多的谷氨酰胺参与脱氢反应,提高了谷氨酰胺的利用率,降低了细胞对氨和丙氨酸的生成,从而削弱了氨对细胞生长和单抗生产的毒害。在流加培养中应严格控制谷氨酰胺的流加浓度及与葡萄糖的配比,要避免谷氨酰胺过分限制导致的葡萄糖溢流代谢和对细胞生长和单抗产率的不利效应。 The effect of glutamine limitation on the growth, metabolism and MAb production of hybridoma cells were investigated by using batch and fed-batch culture modes and different feeding medium components. The peak cell density and specific MAb production rate decrease under glutamine limitation, which indicates that glutamine limitation hinders cell growth and MAb production. The metabolite coefficients of YLac/Glus and YLac/Cells in the gin-limited fed-batch culture are higher than those in the batch and gin-non-limited fed-batch culture, it suggests that glutamine limitation promotes lactate formation from glucose and enhances glucose overflow metabolism. Compared with those in the batch and gin-non-limited fed-batch culture, the lower concentrations and specific formation rates of ammonium and alanine in the gin-limited fed-batch culture, and also the higher YAmm /Gln and lower YAIa/Gin and YAIa/Cetts in it, imply that glutamine limitation can cause more glutamine to be incorporated into dehydrogenation reaction, thus raising the effective utilization of glutamine. It was also found that in the gin-limited fed-batch culture the formation of ammonium and alanine by cells is declined, so that the damage to cell growth and MAb production caused by ammonium is relieved. The feeding glutamine level and the ratio of glutamine to glucose should be rigorously controlled to avoid the glucose overflow metabolism and negative effect on cell growth and MAb production induced by excessive glutamine limitation.
出处 《高校化学工程学报》 EI CAS CSCD 北大核心 2008年第1期77-82,共6页 Journal of Chemical Engineering of Chinese Universities
关键词 谷氨酰胺限制 流加培养 杂交瘤细胞 葡萄糖 glutamine limitation fed-batch culture hybridoma cells glucose ammonium
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参考文献16

  • 1胡俊,汪正清.单克隆抗体技术的研究近况[J].生物学杂志,1998,15(5):1-3. 被引量:1
  • 2Barnabe N, Butler M. The effect of glucose and glutamine on the intracellular nucleotide pool and oxygen uptake rate of a murine hybridoma [J]. Cytotechnol, 2000, 34: 47-57.
  • 3Valdes R, Ibarra N, Gonzalez Met al. CB. Hep-1 hybridoma growth and antibody production using protein-free medium in a hollow fiber bioreactor [J]. Cytotechnol, 2001, 35: 145-154.
  • 4Comer M J, Kearns M J, Wahl J et al. Industrial production of monoclonal antibodies and therapeutic proteins by dialysis fermentation [J]. Cytotechnol, 1990, 3: 295-299.
  • 5Tokashiki M, Arsi T, Hamarnoto K et al. High density culture of hybridoma cells using a perfusion culture vessel with an external centrifuge [J]. Cytotechnol, 1990, 3: 239-244.
  • 6Ljunggren J, Haggstrom L. Glutamine limited fed-batch culture reduces ammonium ion production in animal cells [J]. Biotechnol Lett, 1990, 12(10): 705-710.
  • 7Ozturk S S, Thrift J C, Blackie J D et al. Real-time monitoring and control of glucose and lactate concentrations in a mammalian cell perfusion reactor [J]. Biotechnol Bioeng, 1997, 53(4): 372-378.
  • 8Blankenstein G, Spohn U, Preuschoff F et al. Multichannel flow-inject-analysis biosensor system for on-line monitoring of glucose, lactate, glutarnine, glutamate and ammonia in animal cell culture [J]. Biotechnol Appl Biochem, 1994, 20: 291-307.
  • 9Carl D O, Mark R R. Glutamine replenishment and ammonia removal in hybridoma cell cultures via immobilized glutamine synthetase [J]. Biochemical Engineering Journal, 2001, 9, 125-133.
  • 10Larson TM, Gawlitzek M, Evans H et al. Chemometric evaluation of on-line high-pressure liquid chromatography in mammalian cell cultures: analysis of amino acids and glucose [J]. Biotechnol Bioeng, 2002, 77(5): 553-563.

二级参考文献7

  • 1张立,沈红,张元兴.Fed-batch culture of hybridoma cells in serum-free medium using an optimized feeding strategy[J].Journal of Chemical Technology and Biotechnology,2004,79(2):171-181.
  • 2Christopher C W, Kohlbacher M S, Amos H, Transport of sugars in check-embryo fibroblasts, Evidence for a low-affinity system and a high-affinity system for glucose transport [J]. Biochem J, 1976, 158(2): 439-450.
  • 3Fiechter A, Gmunder F K. Metabolic control of glucose degradation in yeast and tumor cells [J]. Adv Biochemical Eng, 1989, 39:1-28.
  • 4Nadeau I, Sabatie J, Koehl M, et al. Human 293 cell metabolism in low glutamine-supplied culture: Interpretation of metabolic changes through metabolic flux analysis [J]. Metabolic Engineering, 2000, 2(4): 277-292.
  • 5Ljunggren J, Haggstrom L. Catabolic control of hybridoma cells by glucose and glutamine limited fed batch cultures [J]. Biotechnol Bioeng, 1994, 44(7): 808-818.
  • 6周亚竞,谭文松,赵佼,华平,孙祥明,俞俊棠.应用动力学方法在线检测Vero细胞培养过程中的摄氧率[J].生物工程学报,2000,16(4):525-527. 被引量:4
  • 7唐军,蔡水洪,叶勤.克鲁斯假丝酵母分批发酵生产甘油的代谢流分布[J].高校化学工程学报,2002,16(1):58-63. 被引量:24

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