Potapova G I, Khramtsova S N, Tikhonov Iu V, Pimenov A M, Toguzov R T, Shapot V S
Biokhimiia. 1989 Nov;54(11):1857-65.
Using reverse phase ion pair high performance liquid chromatography, the levels of free adenosine, inosine, adenine, xanthine, hypoxanthine, guanine and deoxycytidine in thymocytes and splenic T- and B-lymphocytes of C3HA mice, were studied under normal conditions and at different times (5 hrs, 1, 2, 3, 4, 5, 8 and 20 days) after transplantation of solid hepatoma 22a. The adenosine and inosine levels in thymus and spleen lymphocytes were 5 to 10 times as low as that of purine bases. Inosine was totally absent in T-and B-lymphocytes. The absolute content of adenine and guanine in thymus and spleen lymphocytes was higher compared to purine bases. It was shown that in all cases studied the decrease in hypoxanthine, xanthine and guanine levels in T- and B-lymphocytes during maximal tumour growth, i.e., on the 5th and 8th post-inoculation days as well as at the terminal period (20th day), was correlated with the decrease in the adenosine deaminase and functional activities of these cells. The level of free adenine in thymocytes and spleen T-lymphocytes during tumour growth showed a 2-4-fold increase in comparison with normal values. A dramatic decrease of intracellular concentration of deoxycytidine was observed in thymocytes and spleen T- and B-lymphocytes beginning with the 5th hour and over the whole subsequent period. The key role of the deoxycytidine decline during tumour growth as a possible cause of simultaneous impairment of DNA synthesis and purine deoxyribonucleoside phosphorylation in lymphocytes is discussed.
采用反相离子对高效液相色谱法,研究了正常条件下以及实体肝癌22a移植后不同时间点(5小时、1、2、3、4、5、8和20天)C3HA小鼠胸腺细胞以及脾脏T淋巴细胞和B淋巴细胞中游离腺苷、肌苷、腺嘌呤、黄嘌呤、次黄嘌呤、鸟嘌呤和脱氧胞苷的水平。胸腺和脾脏淋巴细胞中腺苷和肌苷水平比嘌呤碱基低5至10倍。T淋巴细胞和B淋巴细胞中完全没有肌苷。胸腺和脾脏淋巴细胞中腺嘌呤和鸟嘌呤的绝对含量高于嘌呤碱基。结果表明,在所有研究病例中,在肿瘤生长高峰期,即接种后第5天和第8天以及末期(第20天),T淋巴细胞和B淋巴细胞中次黄嘌呤、黄嘌呤和鸟嘌呤水平的降低与这些细胞中腺苷脱氨酶的降低和功能活性相关。肿瘤生长期间胸腺细胞和脾脏T淋巴细胞中游离腺嘌呤水平与正常值相比增加了2至4倍。从第5小时开始及随后整个时期,胸腺细胞以及脾脏T淋巴细胞和B淋巴细胞中脱氧胞苷的细胞内浓度显著降低。文中讨论了肿瘤生长期间脱氧胞苷下降作为淋巴细胞中DNA合成和嘌呤脱氧核糖核苷磷酸化同时受损的可能原因的关键作用。