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流体动力对HEK293细胞的细胞团形成及细胞生长和代谢的影响
引用本文:刘红,刘兴茂,吴本传,叶玲玲,倪小平,黄培堂,陈昭烈.流体动力对HEK293细胞的细胞团形成及细胞生长和代谢的影响[J].生物工程学报,2006,22(1):101-106.
作者姓名:刘红  刘兴茂  吴本传  叶玲玲  倪小平  黄培堂  陈昭烈
作者单位:军事医学科学院生物工程研究所,北京,100071
基金项目:国家科技攻关项目;科技部国际合作重点项目
摘    要:利用HEK293细胞在悬浮培养中具有聚集成团的体外培养特性,在250mL的Bellco的搅拌培养体系中,以HEK293细胞团的粒径、细胞数、细胞活力、葡萄糖比消耗率(qglc)、乳酸比产率(qlac)和乳酸转化率(Ylacglc)为观察指标,考察HEK293细胞在搅拌速度分别设置为25、50、75和100rmin的培养条件下的细胞团形成、粒径分布以及细胞生长和代谢。HEK293细胞在搅拌速度为50rmin和75rmin培养条件下所形成细胞团的粒径大小适中、离散度小。培养7d后,HEK293细胞团的平均粒径分别为201μm和175μm,其中粒径≥225μm的细胞团所占比例均低于10%;在整个培养过程中,细胞团中的HEK293细胞活力维持在90%以上,qglc、qlac和Ylacglc等反映HEK293细胞代谢的参数保持相对恒定。实验结果提示:合适的搅拌速度所产生的流体动力既可使细胞团的粒径控制在合适的范围内,也可为细胞团中的HEK293细胞提供基本满足其正常生长和代谢需要的物质传递效率。

关 键 词:流体动力  HEK293细胞  细胞团  生长  代谢
文章编号:1000-3061(2006)01-0101-06
收稿时间:07 5 2005 12:00AM
修稿时间:08 26 2005 12:00AM

Effects of Hydrodynamic on Aggregates Formation,Growth and Metabolism of HEK293 Cells in Suspension Culture
LIU Hong,LIU Xing-Mao,WU Ben-Chuan,YE Ling-Ling,NI Xiao-Ping,HUANG Pei-Tang,CHEN Zhao-Lie.Effects of Hydrodynamic on Aggregates Formation,Growth and Metabolism of HEK293 Cells in Suspension Culture[J].Chinese Journal of Biotechnology,2006,22(1):101-106.
Authors:LIU Hong  LIU Xing-Mao  WU Ben-Chuan  YE Ling-Ling  NI Xiao-Ping  HUANG Pei-Tang  CHEN Zhao-Lie
Institution:Institute of Biotechnology , Academy of Military Medical Sciences, Bering 10071, China
Abstract:By using the size distribution of cell aggregates, viable cell density, cell viability, specific consumption rate of glucose (q(glc)), specific production rate of lactate (q(lac)) and lactate transform rate (Y(lac/glc)) as the evaluation indexes, the effects of hydrodynamic on aggregates formation, growth and metabolism of HEK293 cells in suspension culture were examined in 250mL spinner-flasks by setting the agitation rates at 25, 50, 75 and 100r/min, respectively. It was found that agitation plays an important role in HEK293 cell aggregates formation and cell aggregates size distribution. After 7d cultivation in spinner-flasks operated at 50r/min and 75r/min, the average diameter of HEK293 cell aggregates was 201 microm and 175 microm, respectively, with the fraction of aggregates larger than 225 microm less than 10%. The cell viability was kept above 90% with the metabolic indexes, including q(glc), q(lac) and Y(lac/glc) kept constant. These results demonstrated that hydrodynamic derived from the proper agitation play a decisive role in controlling the formation and size distribution of HEK293 cell aggregates, and provided sufficient mass transfer to support the normal growth and metabolism of HEK293 cells in suspended aggregates.
Keywords:hydrodynamic  HEK293 cells  aggregates  growth  metabolism
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