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L-乳酸或丙酮酸刺激了诺维科夫大鼠肝癌细胞的生长。

L-Lactate or pyruvate stimulated growth of Novikoff rat hepatoma cells.

作者信息

Siegel L S, Bernlohr R W

出版信息

In Vitro. 1979 Jul;15(7):545-54. doi: 10.1007/BF02618157.

Abstract

Novikoff rat hepatoma cells (subline N1S1-67) grew when 30 mM L-lactate or pyruvate was substituted for D-glucose in Swim's medium 67 supplemented with dialyzed calf bovine serum. A 2.6-fold increase in cell number (1.34 generations) was obtained. RNA, DNA, protein and dry weight increased in proportion to the cell number. In control medium lacking L-lactate, pyruvate or D-glucose, cell growth of 0.42 generation was obtained. Growth with L-lactate was dependent on the L-lactate concentration up to 30 mM at which the greatest increase in cell number occurred. Significant growth did not occur when D-lactate, glycerol, acetate, alpha-ketoglutarate, succinate or malate, each at 30 mM, was substituted for D-glucose. Growth in the medium containing L-lactate was not due to the utilization of D-glucose or some other substrate carried into the culture with the inoculum. Medium contamination by D-glucose was insufficient to explain the growth obtained in the medium containing L-lactate, but could have accounted for growth in the control medium. Throughout growth, the concentration of L-lactate in the medium remained unchanged. The increase in cell number cannot be explained by L-lactate triggering the utilization of glycogen, nor by oxidation and degradation of protein, amino acids, fatty acids, or carbohydrate moieties of glycoprotein in the medium. L-Lactate does not serve as a significant carbon or energy source in the growth of these cells.

摘要

诺维科夫大鼠肝癌细胞(亚系N1S1 - 67)在斯威姆培养基67中,当用30 mM的L - 乳酸或丙酮酸替代D - 葡萄糖,并添加透析小牛血清时能够生长。细胞数量增加了2.6倍(1.34代)。RNA、DNA、蛋白质和干重与细胞数量成比例增加。在缺乏L - 乳酸、丙酮酸或D - 葡萄糖的对照培养基中,细胞生长了0.42代。在L - 乳酸存在下的生长依赖于L - 乳酸浓度,直至30 mM时细胞数量增加最多。当用30 mM的D - 乳酸、甘油、乙酸、α - 酮戊二酸、琥珀酸或苹果酸替代D - 葡萄糖时,未出现显著生长。含L - 乳酸培养基中的生长并非由于D - 葡萄糖的利用或接种物带入培养物中的其他底物的利用。培养基被D - 葡萄糖污染不足以解释在含L - 乳酸培养基中获得的生长,但可能是对照培养基中生长的原因。在整个生长过程中,培养基中L - 乳酸的浓度保持不变。细胞数量的增加无法通过L - 乳酸触发糖原的利用来解释,也不能通过培养基中蛋白质、氨基酸、脂肪酸或糖蛋白的碳水化合物部分的氧化和降解来解释。L - 乳酸在这些细胞的生长中并非重要的碳源或能源。

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