环境污染物对利比亚塑料工厂工人健康的影响,B部分:基于分子水平特征

Suliman O. Alayeb
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引用次数: 0

摘要

本研究旨在揭示塑胶工厂工人因负面环境影响而造成健康损害及遗传基因突变的原因。此外,本研究可能构成一个初步的数据库,以表达塑料工厂对环境的负面影响,这些工厂可能对工人产生负面影响。为了研究长期接触塑料及其溶剂蒸气对血液DNA含量的影响,研究人员从利比亚卡斯阿拉克哈尔市一家塑料厂工作的志愿者身上提取了血液样本。从接触塑料蒸汽的工人中收集了六个不同的样本,分别是:对照(没有接触塑料蒸汽),接触一年,接触三年,接触六年,接触七年和12年。采集血样,采用随机扩增多态性DNA (RAPD)和简单序列重复序列(ISSR)进行分子分析。通过分子分析,在分子水平上评价塑料蒸汽的遗传毒性作用。在分子水平上,提取上述6名志愿者的DNA并进行RAPD分析。结果显示,在对照志愿者、志愿者和接触塑料及其溶剂蒸汽的不同时间的志愿者之间,纹带模式存在一些差异。这些条带模式的变化表明,基因组DNA的修饰以基因组DNA氮碱基的修饰形式发生,这是对塑料蒸汽暴露不同时间的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Health Effects of Environmental Pollutants on Workers in the Libyan Plastic Factories, Part B: Based on Molecular Levels Characteristics
This study aimed to disclose the reasons for the health damage and heritable genetic mutations among workers in plastic manufactories due to negative environmental impacts. Moreover, this study may constitute an initial database that expresses the negative impact on the environment in the plastics factories that may have a negative impact on workers. To study the effects of long-term exposure to plastic and its solvent vapors during plastic manifesting on the blood DNA contents, blood samples were withdrawn from volunteers working in a plastics factory in Kasr Alakhyar city, Libya. Six different samples were collected from Workers exposed to plastic vapor for different periods as follows, control (did not expose to plastic vapor), one-year exposure, three years' exposure, six years' exposure, seven years' exposure, and twelve years' exposure. Blood samples were collected and subjected to molecular analysis using randomly amplified polymorphic DNA (RAPD) and inter simple sequence repeats (ISSR). Molecular analyses were performed to assess the genotoxicity effect of plastic vapor on the molecular level. On the molecular level, the DNA of the six aforementioned volunteers was extracted and subjected to RAPD analysis. The results showed several differences in the banding patterns was recorded between the control volunteer and volunteer and those who exposed to plastic and its solvents vapor for different exposure periods. These changes in the banding patterns suggested that a modification in the genomic DNA occurred in form of modifications in the nitrogen bases of the genomic DNA as a response to the exposure to plastic vapor for a different time exposure.
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