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乳酸浓度对乳酸控制补料分批操作中杂交瘤培养的影响。

Effects of lactate concentration on hybridoma culture in lactate-controlled fed-batch operation.

机构信息

Department of Biotechnology, Faculty of Engineering, Osaka University, Suita-shi, Osaka, Japan.

出版信息

Biotechnol Bioeng. 1992 Mar 5;39(5):556-64. doi: 10.1002/bit.260390511.

Abstract

To investigate the effects of lactate on cell growth and antibody production, a new method of maintaining the lactate concentration constant in a fed-batch culture is described. When the pH was initially adjusted by sodium hydroxide, the specific growth rate decreased and specific death rate increased with an increase of lactate concentration. To investigate whether the inhibition was due to the lactate concentration itself or to the osmotic pressure, the effect of the osmotic pressure adjusted by sodium chloride was compared with that of sodium lactate. When the osmotic pressure was adjusted to same condition as that of sodium lactate using sodium chloride, the specific growth data showed the same degree of growth inhibition. It was thus evident that the inhibition to cell growth was mainly due to osmotic pressure while lactate production from glucose was found to be inhibited by the lactate itself compared with sodium chloride. The specific antibody production rate had a maximum value within a certain range of lactate concentration. Moreover, specific antibody production rate had a unified relationship with the kinetic parameter mu, in spite of the different causes of inhibition by lithium lactate and sodium lactate. A certain "trade-off" relationship between growth and antibody production existed at higher growth rates.

摘要

为了研究乳酸对细胞生长和抗体产生的影响,描述了一种在分批补料培养中保持乳酸浓度恒定的新方法。当最初通过氢氧化钠调节 pH 值时,随着乳酸浓度的增加,比生长速率降低,比死亡速率增加。为了研究这种抑制是由于乳酸浓度本身还是由于渗透压引起的,比较了用氯化钠调节的渗透压的影响与乳酸钠的影响。当用氯化钠将渗透压调节到与乳酸钠相同的条件时,比生长数据显示出相同程度的生长抑制。因此,很明显,对细胞生长的抑制主要是由于渗透压,而与氯化钠相比,葡萄糖产生的乳酸本身会抑制乳酸的产生。在一定的乳酸浓度范围内,特异性抗体的产生速率达到最大值。此外,特异性抗体的产生速率与动力学参数μ呈统一关系,尽管乳酸锂和乳酸钠的抑制原因不同。在较高的生长速率下,生长和抗体产生之间存在一定的“权衡”关系。

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