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Optimization of sorting conditions for the selection of stable,high-producing mammalian cell lines

机译:优化筛选条件以选择稳定,高产的哺乳动物细胞系

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The production of Green Fluorescent Protein in recombinant NIH3T3 mouse fibroblast cells was used as a model to determine the optimal conditions for the rapid isolation of high-producing cell lines with a fluorescence-activated cell sorter. "Bulk sorting", that is, sorting of a large number of positive cells, did not result in a stable, high-producing cell line due to overgrowth of high-producing cells by low- or nonproducing cells. The production kinetics and expression of GFP during batch culture was found to differ between NIH3T3 cells and HepG2 hepatoma cells, even though the same plasmid was used for transfection. The kinetics of product formation need therefore to be determined from case to case to select the optimal timepoint for analysis and sorting. Subcloning of sorted cells into microtiter plates only resulted in high-producing subclones when 1 or 2 cells were seeded per well. Higher seeding rates again resulted in overgrowth of low- or nonproducers. By subcloning, two high-producing cells lines could be isolated. They had a 10- and 15-fold higher fluorescent signal compared to the negative control. While one of these subclones started to decrease it's GFP expression after 2 months, the other clone stably expressed GFP for 4 months.
机译:以重组NIH3T3小鼠成纤维细胞中绿色荧光蛋白的产生为模型,以确定通过荧光激活细胞分选仪快速分离高产细胞系的最佳条件。由于大量生产的细胞被低产量或非生产性细胞过度繁殖,“大量分选”,即大量阳性细胞的分选,没有产生稳定的高产量细胞系。即使在相同的质粒转染时,NIH3T3细胞和HepG2肝癌细胞之间的分批培养过程中,GFP的生产动力学和表达也有所不同。因此,需要根据具体情况确定产品形成的动力学,以选择最佳时间点进行分析和分类。当每孔接种1或2个细胞时,将分选的细胞亚克隆到微量滴定板中只会产生高产量的亚克隆。较高的播种率再次导致低产或非生产者的过度生长。通过亚克隆,可以分离出两个高产细胞系。与阴性对照相比,它们的荧光信号高10到15倍。这些亚克隆之一在2个月后开始降低GFP的表达,而另一个克隆在4个月内稳定表达了GFP。

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