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19种杂环氮芥(ICR化合物)在培养哺乳动物细胞中的致突变性和细胞毒性。

Mutagenicity and cytotoxicity of nineteen heterocyclic mustards (ICR compounds) in cultured mammalian cells.

作者信息

Fuscoe J C, O'Neill J P, Peck R M, Hsie A W

出版信息

Cancer Res. 1979 Dec;39(12):4875-81.

PMID:91429
Abstract

The mutagenicity and cytotoxicity of 19 ICR compounds, including 6 reported previously, have been determined in the Chinese hamster ovary/hypoxanthine-guanine phosphoribosyltransferase system. As with other physical and chemical agents, ICR 170 and 191 exhibit a phenotypic expression time of 7 to 9 days, independent of concentrations tested. Thirteen of these compounds are mutagenic. At equimolar concentrations, the compounds with the tertiary amine-type side chain (ICR 217, 340, 355, 368, 170, and 292) are more mutagenic than the compounds with the secondary amine-type side chain (ICR 449, 371, 191, and 372). All secondary amine types show a "plateau" in their concentration-dependent mutagenesis curves at 3 to 4 microM. Shortening of the side chain by one carbon (ICR 171) results in a reduced mutagenicity. Substitution of a sulfur atom for a nitrogen in the side chain (ICR 342) increases both mutagenicity and cytotoxicity. The presence of two 2-chloroethyl groups on the side chain (ICR 220) also results in greatly increased cytotoxicity and mutagenicity. When the 2-chloroethyl group of ICR 340, 372, 292, 191, or 170 is replaced by a 2-hydroxyethyl group (ICR 340-OH, 372-OH, 292-OH, 191-OH, or 170-OH), a mutagenically inactive compound results which remains toxic. Replacement of the amine linkage with an ether linkage (ICR 283) also yields a mutagenically inactive compound.

摘要

已在中国仓鼠卵巢/次黄嘌呤-鸟嘌呤磷酸核糖转移酶系统中测定了19种ICR化合物的致突变性和细胞毒性,其中6种为先前报道的化合物。与其他物理和化学试剂一样,ICR 170和191表现出7至9天的表型表达时间,与测试浓度无关。这些化合物中有13种具有致突变性。在等摩尔浓度下,具有叔胺型侧链的化合物(ICR 217、340、355、368、170和292)比具有仲胺型侧链的化合物(ICR 449、371、191和372)更具致突变性。所有仲胺型在其浓度依赖性致突变曲线中在3至4 microM处显示出一个“平台”。侧链缩短一个碳原子(ICR 171)导致致突变性降低。侧链中的氮被硫原子取代(ICR 342)会增加致突变性和细胞毒性。侧链上存在两个2-氯乙基(ICR 220)也会导致细胞毒性和致突变性大大增加。当ICR 340、372、292、191或170的2-氯乙基被2-羟乙基取代时(ICR 340-OH、372-OH、292-OH、191-OH或170-OH),会产生一种无致突变活性但仍有毒性的化合物。用醚键取代胺键(ICR 283)也会产生一种无致突变活性的化合物。

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