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在化学成分确定的无蛋白培养基中优化与生长相关的杂交瘤细胞系的流加培养。

Fed-batch culture optimization of a growth-associated hybridoma cell line in chemically defined protein-free media.

机构信息

Graduate School of the Chinese Academy of Sciences, Shanghai, China.

出版信息

Cytotechnology. 2006 Sep;52(1):25-38. doi: 10.1007/s10616-006-9026-3. Epub 2006 Dec 2.

Abstract

An investigation was made to study the processes of fed-batch cultures of a hybridoma cell line in chemically defined protein-free media. First of all, a strong growth-associated pattern was correlated between the production of MAb and growth of cells through the kinetic studies of batch cultures, suggesting the potential effectiveness of extending the duration of exponential growth in the improvement of MAb titers. Second, compositions of amino acids in the feeding solution were balanced stepwisely according to their stoichiometrical correlations with glucose uptake in batch and fed-batch cultures. Moreover, a limiting factor screening revealed the constitutive nature of Ca(2+) and Mg(2+) for cell growth, and the importance of their feeding in fed-batch cultures. Finally, a fed-batch process was executed with a glucose uptake coupled feeding of balanced amino acids together with groups of nutrients and a feeding of CaCl(2) and MgCl(2) concentrate. The duration of exponential cell growth was extended from 70 h in batch culture and 98 h in fed-batch culture without Ca(2+)/Mg(2+) feeding to 117 h with Ca(2+)/Mg(2+) feeding. As a result of the prolonged exponential cell growth, the viable and total cell densities reached 7.04 x 10(6) and 9.12 x 10(6) cells ml(-1), respectively. The maximal MAb concentration achieved was increased to approximately eight times of that in serum supplemented batch culture.

摘要

本研究旨在考察在化学成分确定且不含蛋白的培养基中进行杂交瘤细胞系流加培养的过程。首先,通过分批培养的动力学研究,发现 MAb 的产生与细胞生长之间存在强烈的生长相关模式,这表明通过延长指数生长期可以有效地提高 MAb 的效价。其次,根据氨基酸在分批和流加培养中与葡萄糖摄取的化学计量关系,逐步平衡补料液中的氨基酸组成。此外,通过限制因子筛选发现,Ca(2+)和 Mg(2+)对于细胞生长是组成型的,在流加培养中需要添加这两种物质。最后,采用葡萄糖摄取偶联补料的方法,添加平衡氨基酸、营养物组和 CaCl(2)和 MgCl(2)浓缩液进行流加培养。与不添加 Ca(2+)/Mg(2+)的分批和流加培养相比,细胞指数生长期从 70 h 延长到 117 h。由于指数生长期的延长,活细胞和总细胞密度分别达到 7.04×10(6)和 9.12×10(6)细胞/ml。最大 MAb 浓度提高到了添加血清的分批培养的约 8 倍。

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