Yamagata M, Hasuda K, Stamato T, Tannock I F
Department of Medicine and Medical Biophysics, Ontario Cancer Institute/Princess Margaret Hospital, Toronto, Canada.
Br J Cancer. 1998 Jun;77(11):1726-31. doi: 10.1038/bjc.1998.289.
Solid tumours develop an acidic extracellular environment with high concentration of lactic acid, and lactic acid produced by glycolysis has been assumed to be the major cause of tumour acidity. Experiments using lactate dehydrogenase (LDH)-deficient ras-transfected Chinese hamster ovarian cells have been undertaken to address directly the hypothesis that lactic acid production is responsible for tumour acidification. The variant cells produce negligible quantities of lactic acid and consume minimal amounts of glucose compared with parental cells. Lactate-producing parental cells acidified lightly-buffered medium but variant cells did not. Tumours derived from parental and variant cells implanted into nude mice were found to have mean values of extracellular pH (pHe) of 7.03 +/- 0.03 and 7.03 +/- 0.05, respectively, both of which were significantly lower than that of normal muscle (pHe = 7.43 +/- 0.03; P < 0.001). Lactic acid concentration in variant tumours (450 +/- 90 microg g(-1) wet weight) was much lower than that in parental tumours (1880 +/- 140 microg/g(-1)) and similar to that in serum (400 +/- 35 microg/g(-1)). These data show discordance between mean levels of pHe and lactate content in tumours; the results support those of Newell et al (1993) and suggest that the production of lactic acid via glycolysis causes acidification of culture medium, but is not the only mechanism, and is probably not the major mechanism responsible for the development of an acidic environment within solid tumours.
实体瘤会形成一种细胞外酸性环境,其中乳酸浓度很高,而糖酵解产生的乳酸被认为是肿瘤酸性的主要成因。为了直接验证乳酸生成是肿瘤酸化原因这一假设,研究人员使用了缺乏乳酸脱氢酶(LDH)的ras转染中国仓鼠卵巢细胞进行实验。与亲代细胞相比,变异细胞产生的乳酸量可忽略不计,消耗的葡萄糖量也极少。产生乳酸的亲代细胞使轻度缓冲的培养基酸化,但变异细胞则不会。将亲代细胞和变异细胞植入裸鼠体内形成的肿瘤,其细胞外pH(pHe)平均值分别为7.03±0.03和7.03±0.05,两者均显著低于正常肌肉的pHe(pHe = 7.43±0.03;P < 0.001)。变异肿瘤中的乳酸浓度(450±90微克/克湿重)远低于亲代肿瘤中的乳酸浓度(1880±140微克/克),且与血清中的乳酸浓度(400±35微克/克)相似。这些数据表明肿瘤中pHe平均水平与乳酸含量之间存在不一致;结果支持了纽厄尔等人(1993年)的研究结果,并表明通过糖酵解产生乳酸会导致培养基酸化,但这不是唯一机制,可能也不是实体瘤内酸性环境形成的主要机制。