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A system for mutation measurement in mammalian cells: Application to γ-irradiation

机译:哺乳动物细胞突变测量系统:在γ射线照射中的应用

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摘要

Monitoring of mutagenesis by environmental agents for the purpose of preventing genetic disease including cancer must include quantitation of cell killing, sensitive measurement of mutation production by appropriate doses of each agent, and assessment of mutation repair effects in mammalian cells. A four-step procedure, in the presence and absence of a repair suppressor, is proposed: (i) determination of the survival curve; (ii) measurement of the mitotic index in cells collected after treatment with colcemid; (iii) construction of a mutagenesis yield curve in the presence and absence of a repair suppressor, like caffeine; and (iv) assessment of the effect of test agents on the repair of mutations produced by other mutagens. The procedure is quantitative, reproducible, and reasonably rapid. It involves measurement of mutations causing visible chromosomal aberrations. Numerical parameters are proposed defining quantitatively mutation, cell killing, and mutation repair capacity. The procedure is applied to γ-irradiation and can detect the effects of doses as low as 2–5 cGy. Theoretical analysis of the underlying processes is presented, using the concept of DE0, the effective dose of mutagen after repair mechanisms and neutralizing agents have acted. Microscopically visible chromosome aberrations are due to mutations that distort the process of mitotic chromosome condensation, with or without actual chromosome breakage.
机译:为了预防包括癌症在内的遗传疾病,环境药物对诱变的监测必须包括细胞杀伤的定量,通过适当剂量的每种药物进行敏感的突变产生测量以及评估哺乳动物细胞中的突变修复作用。建议在有和没有修复抑制剂的情况下分四步进行:(i)确定生存曲线; (ii)测量用秋水仙胶处理后收集的细胞中的有丝分裂指数; (iii)在存在和不存在咖啡因等修复抑制剂的情况下构建诱变产量曲线; (iv)评估测试剂对其他诱变剂产生的突变的修复作用。该过程是定量的,可重复的并且相当迅速。它涉及测量引起可见染色体畸变的突变。提出了用于定义定量突变,细胞杀伤和突变修复能力的数值参数。该程序适用于γ射线照射,可以检测低至2–5 cGy的剂量。利用DE 0 的概念,对基本过程进行了理论分析,提出了修复机理和中和剂起作用后的有效诱变剂量。显微镜下可见的染色体畸变是由于突变导致有丝分裂染色体凝结过程扭曲,无论是否存在实际的染色体断裂。

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