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Density-dependent regulation of growth of BSC-1 cells in cell culture: Control of growth by low molecular weight nutrients

机译:细胞培养中BSC-1细胞生长的密度依赖性调节:通过低分子量营养物控制生长

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摘要

BSC-1 cells, epithelial cells of African green monkey kidney origin, show pronounced density-dependent regulation of growth in cell culture. Growth of the cells is rapid to a density of approximately 1.5 × 105 cells/per cm2 in Dulbecco-modified Eagle's medium supplemented with 10% calf serum. Above this “saturation density,” growth is much slower. It has been found that the glucose concentration in the culture medium is important in determining the “saturation density.” If the glucose concentration is increased 4-fold, the “saturation density” increases approximately 50%. Reduction of the “saturation density” of BSC-1 cells is also possible by decreasing the concentrations of low molecular weight nutrients in the culture medium. In medium supplemented with 0.1% calf serum, decreasing the concentrations of all of the organic constituents of the medium, from the high levels present in Dulbecco-modified Eagle's medium to concentrations near physiological levels, decreases the “saturation density” by approximately half. The decreased “saturation density” is not the result of lowering the concentration of any single nutrient but rather results from reduction of the concentrations of several nutrients. When the growth of BSC-1 cells is limited by low concentrations of all of the nutrients, some stimulation of growth results from increasing, separately, the concentrations of individual groups of nutrients, but the best growth stimulation is obtained by increasing the concentrations of all of the nutrients. The “wound healing” phenomenon, one manifestation of density-dependent regulation of growth in cell culture, is abolished by lowering the concentration of glutamine in the medium. Density-dependent regulation of growth of BSC-1 cells in cell culture thus appears to be a complex phenomenon that involves an interaction of nutrient concentrations with other regulatory factors.
机译:BSC-1细胞是非洲绿猴肾起源的上皮细胞,在细胞培养中显示出明显的密度依赖性生长调节。在补充有10%小牛血清的Dulbecco改良的Eagle培养基中,细胞的生长迅速达到约1.5×10 5 细胞/ cm 2的密度。超过此“饱和密度”,增长要慢得多。已经发现,培养基中的葡萄糖浓度对于确定“饱和密度”很重要。如果葡萄糖浓度增加4倍,则“饱和密度”增加约50%。也可以通过降低培养基中低分子量营养素的浓度来降低BSC-1细胞的“饱和密度”。在添加了0.1%小牛血清的培养基中,将培养基中所有有机成分的浓度从存在于Dulbecco改性的Eagle培养基中的高浓度降低到接近生理水平的浓度,可使“饱和密度”降低大约一半。降低的“饱和密度”不是降低任何一种营养素浓度的结果,而是降低几种营养素浓度的结果。当BSC-1细胞的生长受到所有营养物浓度低的限制时,单独增加单个营养物组的浓度会导致一些生长刺激,但是通过增加所有营养物的浓度可以获得最佳的生长刺激营养。通过降低培养基中的谷氨酰胺浓度,可以消除“伤口愈合”现象,这是细胞培养中密度依赖性调节生长的一种表现。因此,细胞培养中BSC-1细胞生长的密度依赖性调节似乎是一个复杂的现象,涉及营养物浓度与其他调节因子的相互作用。

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