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2-氮杂-8-锗螺[4,5]癸烷-2-丙胺-8,8-二乙基-N,N-二甲基二氯化物(NSC 192965;螺锗)的体外细胞毒性作用及生物学活性

Cytotoxic effects and biological activity of 2-aza-8-germanspiro[4,5]-decane-2-propanamine-8,8-diethyl-N,N-dimethyl dichloride (NSC 192965; spirogermanium) in vitro.

作者信息

Hill B T, Whatley S A, Bellamy A S, Jenkins L Y, Whelan R D

出版信息

Cancer Res. 1982 Jul;42(7):2852-6.

PMID:7200828
Abstract

Lethal and other biological effects of 2-aza-8-germanspiro[4,5]decane-2-propanamine-8,8-diethyl-N,N-dimethyl dichloride (NSC 192965; spirogermanium), representing a new chemical class of compound exhibiting antitumor activity, have been studied in vitro. Survival curves for NIL 8 hamster cells were exponential with greater kill occurring with increasing drug concentrations and longer exposure times. Cytotoxicity was temperature dependent. "Quiescent" cultures were significantly less sensitive to spirogermanium than were logarithmically growing cells. These lethal effects showed no phase specificity. There was no evidence of progression delay through the cycle following spirogermanium treatment. When spirogermanium was tested against a range of human cell lines, the consistency of the values for the drug concentration required to reduce survival by 50% on the exponential part of the survival curve, derived from colony-forming assays, was most marked. The survival curves, characterized by an initial shoulder, were steep and exponential with measurements possible over only a narrow concentration range since complete cell lysis occurred at levels causing a greater than 2-log kill. Cell membrane damage by spirogermanium, as judged by dye exclusion, was progressive with time and increasing drug concentrations. Protein synthesis proved most susceptible to the drug. Spirogermanium concentrations cytotoxic to tumor cells were also toxic to cultured rat neurons, confirming the clinical neurological toxicity encountered. The precise mode of action of spirogermanium remains to be established, and these data further illustrate its apparent lack of specificity.

摘要

2-氮杂-8-锗螺[4,5]癸烷-2-丙胺-8,8-二乙基-N,N-二甲基二氯化物(NSC 192965;螺锗)是一类具有抗肿瘤活性的新型化合物,其致死及其他生物学效应已在体外进行了研究。NIL 8仓鼠细胞的存活曲线呈指数形式,随着药物浓度增加和暴露时间延长,杀伤作用增强。细胞毒性具有温度依赖性。“静止”培养的细胞对螺锗的敏感性明显低于对数生长期的细胞。这些致死效应无阶段特异性。螺锗处理后,没有证据表明细胞周期进程延迟。当用螺锗对一系列人类细胞系进行测试时,通过集落形成试验得出的、使存活曲线指数部分的存活率降低50%所需的药物浓度值最为一致。存活曲线以初始平台期为特征,较为陡峭且呈指数形式,由于在导致大于2个对数杀伤水平时细胞完全裂解,因此只能在较窄的浓度范围内进行测量。通过染料排斥法判断,螺锗对细胞膜的损伤随时间和药物浓度增加而逐渐加重。蛋白质合成对该药物最为敏感。对肿瘤细胞具有细胞毒性的螺锗浓度对培养的大鼠神经元也有毒性,这证实了临床上所遇到的神经毒性。螺锗的确切作用方式尚待确定,这些数据进一步说明了其明显缺乏特异性。

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