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The cytokinesis-block micronucleus technique and its application to genotoxicity studies in human populations.

机译:细胞分裂阻滞微核技术及其在人类遗传毒性研究中的应用。

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摘要

The development of the cytokinesis-block (CB) technique has made the human lymphocyte micronucleus assay (MN) a reliable and precise method for assessing chromosome damage. Recent studies in our laboratory have confirmed that this method is a sensitive indicator of in vivo radiation exposure in patients undergoing fractionated partial-body radiotherapy and rodents exposed to uniform whole-body irradiation, thus supporting the application of the cytokinesis-block micronucleus (CBMN) assay for biological dosimetry. To further define the use of this assay in biomonitoring, we have also undertaken extensive studies to determine the spontaneous level of MN in normal human populations and its relationship to various lifestyle factors. During the past year, we have also developed a new variation to the CBMN assay that enables the conversion of excision-repairable lesions to MN within one cell-cycle using cytosine arabinoside. With this method the slope of the in vitro dose-response curves was increased by a factor of 1.8 for X-rays, 10.3 for ultraviolet (254 nm) radiation, and approximately 40-fold for methylnitrosourea. Consequently, the CBMN assay can now be used not only to measure whole chromosome loss or chromosome breaks but also excision repair events. The versatility and simplicity of the CBMN assay together with new developments in automation should enable its successful application in monitoring exposed populations as well as identifying mutagen-sensitive individuals within a population.
机译:胞质分裂阻滞(CB)技术的发展已使人淋巴细胞微核测定(MN)​​成为评估染色体损伤的可靠且精确的方法。我们实验室的最新研究已经证实,该方法是接受分级分体放疗和啮齿动物暴露于均匀全身辐射的患者体内放射线暴露的敏感指标,因此支持胞质分裂阻滞微核(CBMN)的应用生物剂量测定法。为了进一步确定该测定法在生物监测中的用途,我们还进行了广泛的研究,以确定正常人群中MN的自发水平及其与各种生活方式因素的关系。在过去的一年中,我们还开发了CBMN检测方法的新变体,可以使用胞嘧啶阿拉伯糖苷在一个细胞周期内将可切除修复的病变转化为MN。使用这种方法,体外剂量反应曲线的斜率对于X射线增加了1.8倍,对于紫外线(254 nm)辐射增加了10.3倍,对于甲基亚硝基脲增加了约40倍。因此,CBMN分析不仅可以用于测量整个染色体的丢失或染色体断裂,还可以用于切除修复事件。 CBMN分析的多功能性和简便性以及自动化方面的新发展应使其能够成功地用于监测暴露的人群以及鉴定人群中的诱变敏感个体。

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  • 作者

    Fenech, M;

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  • 年度 1993
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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