Selection and isolation of cells for optimal growth in hollow fiber bioreactors.

M J Gramer, T L Britton
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引用次数: 8

Abstract

Growth of a murine hybridoma in a hollow fiber microbioreactor was poor. This corresponded to slow initial growth in the Maximizer, a pilot scale hollow fiber bioreactor system. Medium screening experiments with the microbioreactor demonstrated that the slow growth was due to dialysis of low molecular weight serum components (under about 10 kDa) from the cell side of the fibers to the basal medium on the noncell side of the fibers. Better growth can be achieved by adding serum to both sides of the fibers, but this is an expensive option. As an alternative, the microbioreactor was used to select for a population of cells that did not require serum on both sides of the fiber for optimal growth. From this population, a stable subclone was isolated using limiting dilution followed by growth assessment in microbioreactors. The subclone was cultured in the Maximizer under conditions identical to the parental cell line. The subclone reached confluency in about 9 days compared with about 16 days for the parental cell line. At confluency, the subclone produced antibody at twice the rate of the parental cell line. These results demonstrate that the microbioreactor is a useful tool for quickly isolating subclones that are better suited for growth in a hollow fiber bioreactor.

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中空纤维生物反应器中最佳生长细胞的选择与分离。
小鼠杂交瘤在中空纤维微生物反应器中生长不良。这与Maximizer(中试规模的中空纤维生物反应器系统)的初始生长缓慢相对应。微生物反应器培养基筛选实验表明,生长缓慢是由于低分子量血清成分(约10 kDa以下)从纤维的细胞侧透析到纤维的非细胞侧的基础培养基。通过在纤维的两侧添加血清可以实现更好的生长,但这是一个昂贵的选择。作为一种替代方法,微生物反应器用于选择不需要纤维两侧血清的细胞群以获得最佳生长。从这个群体中,通过限制稀释分离出一个稳定的亚克隆,然后在微生物反应器中进行生长评估。亚克隆在与亲本细胞系相同的条件下在Maximizer中培养。亚克隆在约9天内达到融合,而亲本细胞系约为16天。在融合时,亚克隆产生抗体的速度是亲本细胞系的两倍。这些结果表明,微生物反应器是一个有用的工具,可以快速分离亚克隆,更适合在中空纤维生物反应器中生长。
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来源期刊
Hybridoma
Hybridoma 医学-免疫学
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审稿时长
4-8 weeks
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