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关于19-去甲睾酮亚硝基氨基甲酸酯LS 1727作用机制的研究。

Studies on the mechanism of action of LS 1727, a nitrosocarbamate of 19-nortestosterone.

作者信息

Hartley-Asp B, Wilkinson R, Venitt S, Harrap K R

出版信息

Acta Pharmacol Toxicol (Copenh). 1981 Feb;48(2):129-38. doi: 10.1111/j.1600-0773.1981.tb01598.x.

Abstract

LS 1727, a nitrosocarbamate of 19-nortestosterone, was active against lymphoid, antimetabolite-sensitive, cell lines in vitro especially L1210 and Ehrlich ascites tumour lines. It was less effective against alkylating agent-sensitive lines such as the Walker 256 carcinosarcoma. These results suggested a possible antimetabolite mode of action but LS 1727 had no effect on deoxy-or ribonucleotide pool sizes in L1210 cells. Studies on macromolecular synthesis showed an early inhibition of DNA synthesis whilst RNA and protein synthesis continued for 24-48 hours. This was reminiscent of a classic alkylating agent-like effect. In vivo studies with specific alkylating agent-sensitive, or antimetabolite-sensitive tumours showed no antitumour activity although significant inhibition of Ehrlich ascites tumour cell growth was observed at high doses. In vitro cytotoxicity studies showed LS 1727 to be inactivated in the presence of mouse, rat and dog liver supernatants. This would explain the poor antitumour effects in vivo compared with the in vitro observations. Because LS 1727 is a nitrosocarbamate its possible mutagenic activity was investigated. LS 1727 was highly mutagenic but this property was also lost in the presence of a rat liver microsomal fraction. Although an effective cytotoxic agent in vitro LS 1727 is only effective in vivo at toxic doses.

摘要

LS 1727是一种19-去甲睾酮的亚硝基氨基甲酸酯,在体外对淋巴样、抗代谢物敏感的细胞系尤其是L1210和艾氏腹水瘤细胞系有活性。它对诸如Walker 256癌肉瘤等对烷化剂敏感的细胞系效果较差。这些结果提示了一种可能的抗代谢物作用模式,但LS 1727对L1210细胞中的脱氧核苷酸或核糖核苷酸池大小没有影响。对大分子合成的研究显示,DNA合成早期受到抑制,而RNA和蛋白质合成持续24 - 48小时。这让人联想到经典的烷化剂样效应。对特定的对烷化剂敏感或抗代谢物敏感的肿瘤进行的体内研究显示没有抗肿瘤活性,尽管在高剂量下观察到对艾氏腹水瘤细胞生长有显著抑制。体外细胞毒性研究表明,在小鼠、大鼠和犬的肝脏上清液存在的情况下,LS 1727会失活。这可以解释与体外观察结果相比其在体内抗肿瘤效果不佳的原因。由于LS 1727是一种亚硝基氨基甲酸酯,对其可能的诱变活性进行了研究。LS 1727具有高度诱变活性,但在大鼠肝脏微粒体组分存在的情况下,这种特性也会丧失。尽管LS 1727在体外是一种有效的细胞毒性剂,但在体内仅在有毒剂量下才有效。

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