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一类新型的代谢拮抗物:吡啶硫代糖苷作为潜在的抗癌剂。

A new class of antimetabolites: pyridine thioglycosides as potential anticancer agents.

机构信息

Faculty of Science, Chemistry Department, Helwan University, Helwan, Cairo, Egypt.

出版信息

Z Naturforsch C J Biosci. 2010 Sep-Oct;65(9-10):577-87. doi: 10.1515/znc-2010-9-1008.

Abstract

The present study was designed for highlighting and focusing on the cytotoxic activity of a new class of antimetabolites both on human cell lines, namely liver carcinoma cell line (Hepg2), lung carcinoma cell line (H460), breast carcinoma cell line (MCF7), brain carcinoma cell line (U251), and animal cell line EAC (Ehrlich ascites carcinoma cells). The results revealed that some of these modified deazapyrimidine thioglycosides have significant cytotoxic activity against EAC cells with growth inhibition percentage ranged between 80% to 90%. The possible inhibitory mechanism of the pyridine thioglycosides was explored by studying the cell cycle perturbation of thioglycosides against human cell lines (in vitro) as well as the most suitable time for maximum compound cytotoxic activity after 6, 18, and 24 h of incubation. To confirm the cytotoxic activity of these compounds, they have been tested for their apoptotic and antiproliferative activity in vivo against solid Ehrlich tumours using five groups of Swiss albino mice for 37 days from inoculation and three treatments, 250, 500 and 1000 microg/kg body weight. There was significant reduction in Ehrlich tumour size in case of the 500 and 1000 microg/kg body weight group but mild significant tumour reduction in the 250 microg/kg body weight group. Histograms of DNA per cell for each treatment group indicated that there was a dose-dependent increase in the preG1 phase with a corresponding complete arrest of cells from entering the G2/M phase compared to the untreated EAC group. In conclusion, pyridine thioglycosides have proven good cytotoxic effects against EAC cells and also significant cytotoxic activity against the four tested human cell lines. Flow cytometric DNA ploidy analysis of pyridine thioglcyosides against the Hepg2 and U251 cell lines revealed that the postulated mechanism of action of pyridine thioglcyosides is cell cycle arrest in the S phase. This is similar to antimetabolites and cell cycle arrest in the G2/M phase (M phase) in the same way as microtubule inhibitors like pyridine thioglycosides are cell-cycle-specific in the S phase and the M phase (in case of human cell lines) and have apoptotic effects (in case of animal cell line).

摘要

本研究旨在强调和关注一类新的抗代谢物对人类细胞系(肝癌细胞系 Hepg2、肺癌细胞系 H460、乳腺癌细胞系 MCF7、脑癌细胞系 U251)和动物细胞系 EAC(艾氏腹水癌细胞)的细胞毒性作用。结果表明,这些修饰的去氮嘧啶硫糖苷中的一些对 EAC 细胞具有显著的细胞毒性活性,生长抑制率在 80%至 90%之间。通过研究硫糖苷对人类细胞系(体外)的细胞周期干扰以及在孵育 6、18 和 24 小时后获得最大化合物细胞毒性活性的最佳时间,探索了吡啶硫糖苷的可能抑制机制。为了确认这些化合物的细胞毒性活性,它们已经在体内对固着性艾氏腹水瘤进行了凋亡和抗增殖活性测试,使用五组瑞士白化病小鼠进行了 37 天的接种和三种处理,250、500 和 1000μg/kg 体重。在 500 和 1000μg/kg 体重组中,艾氏腹水瘤的大小显著减小,但在 250μg/kg 体重组中,肿瘤大小略有显著减小。每个处理组的细胞 DNA 直方图表明,与未处理的 EAC 组相比,预 G1 期呈剂量依赖性增加,细胞完全停止进入 G2/M 期。总之,吡啶硫糖苷对 EAC 细胞具有良好的细胞毒性作用,对四种测试的人类细胞系也具有显著的细胞毒性活性。对 Hepg2 和 U251 细胞系的吡啶硫糖苷进行流式细胞术 DNA 倍体分析表明,吡啶硫糖苷的作用机制是 S 期细胞周期停滞。这与抗代谢物相似,细胞周期在 G2/M 期(M 期)停滞,同样,吡啶硫糖苷等微管抑制剂在 S 期和 M 期(在人类细胞系中)具有细胞周期特异性,并具有凋亡作用(在动物细胞系中)。

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