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The Importance of Age and Smoking in Evaluating Adverse Cytogenetic Effects of Exposure to Environmental Agents

机译:年龄和吸烟在评估暴露于环境因素的不良细胞遗传学影响中的重要性

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Fluorescence in situ hybridization with chromosome-specific composite DNA probes (chromosome painting) is a reliable and efficient method for detecting structural chromosome aberrations. Painting is now being used to quantify chromosome damage in many human populations. In one such study we evaluated 91 unexposed people ranging in age from birth (cord bloods) to 79. We established a baseline frequency of stable aberrations that showed a highly significant curvilinear increase with age (p < 0.00001) that accounted for 70% of the variance among donors. The magnitude of this effect illustrates the importance of understanding the cytogenetic changes that occur with age, which is particularly important for quantifying the effects of prior adverse environmental, occupational, or accidental exposure. In this paper we use the data obtained in our previous study to characterize the distribution of stable aberrations by age and pack-years of cigarette smoking. We also provide estimates of the number of cell equivalents that need to be scored to detect a given increase in aberrations above the background level surveyed in this population.
机译:用染色体特异性复合DNA探针进行荧光原位杂交(染色体绘画)是检测结构染色体畸变的可靠而有效的方法。现在,绘画被用于量化许多人群的染色体损伤。在一项此类研究中,我们评估了91个未暴露人群,其年龄范围从出生(脐带血)到79岁。我们确定了稳定畸变的基线频率,该基线显示随年龄的曲线显着增加(p <0.00001),占总体的70%捐助者之间的差异。这种作用的程度说明了了解随年龄增长发生的细胞遗传学变化的重要性,这对于量化先前不利的环境,职业或意外接触的影响尤其重要。在本文中,我们使用在先前研究中获得的数据来表征按年龄和吸烟年限所得出的稳定像差分布。我们还提供了对需要进行计分的细胞等效数量的估计值,以检测该人口中高于背景水平的给定像差增加。

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