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用于小鼠脾细胞抗体应答的培养基成分优化。

Optimization of the culture medium composition for the antibody response of mouse spleen cells.

作者信息

Zhu D, Lefkovits I

出版信息

In Vitro. 1984 Aug;20(8):615-22. doi: 10.1007/BF02619610.

Abstract

The Mishell-Dutton culture system for in vitro primary antibody response of mouse spleen cells was used to optimize the amino acid composition of RPMI 1640 media. Each of the 20 amino acids was tested over a broad range of concentrations always leaving the remaining 19 amino acids unaltered (i.e. at the formula recommended concentration). In several instances, higher plaque-forming cell responses were obtained with an amino acid concentration that was either higher or lower than that recommended: (a) the optimum concentration for valine, glutamine, and lysine lies considerably above the recommended one, (b) the optimum concentration for leucine as well as for several other amino acids lies below the recommended concentration, and (c) the optimum concentration for arginine corresponds exactly to the recommended concentration. The second round of optimization, i.e. combining of two conditions that individually yielded an improved response often caused a decrease of response. The possibility is discussed that for an optimal response a ratio of two or several amino acids rather than the absolute concentration of any one amino acid is of importance.

摘要

采用米舍尔 - 达顿小鼠脾细胞体外初次抗体应答培养系统,对RPMI 1640培养基的氨基酸组成进行优化。对20种氨基酸中的每一种都在很宽的浓度范围内进行了测试,其余19种氨基酸的浓度始终保持不变(即按照推荐配方浓度)。在若干情况下,当氨基酸浓度高于或低于推荐浓度时,均可获得更高的空斑形成细胞应答:(a) 缬氨酸、谷氨酰胺和赖氨酸的最佳浓度远高于推荐浓度;(b) 亮氨酸以及其他几种氨基酸的最佳浓度低于推荐浓度;(c) 精氨酸的最佳浓度恰好与推荐浓度一致。第二轮优化,即将两种单独使用时能提高应答的条件组合起来,结果常常导致应答下降。文中讨论了一种可能性,即对于最佳应答而言,两种或几种氨基酸的比例而非任何一种氨基酸的绝对浓度更为重要。

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