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Application of classic epidemiological studies and proteomics in research of occupational and environmental exposure to lead, cadmium and arsenic

机译:经典的流行病学研究和蛋白质组学在铅和镉,砷职业和环境暴露研究中的应用

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The metals/metaloids lead (Pb), cadmium (Cd), and arsenic (As) are among the leading toxic agents in the environment. They represent an important source of dangerous exposure in humans, particularly in industry workers. The most serious consequences of exposure to those heavy metals are cancers and cardiovascular diseases. In studies of human exposure to Pb, Cd, and As alone and in a mixture markers signaling the subtle, early lesions that occur in the human body are still lacking. It is appropriate to develop high throughput techniques and use non-invasive materials. The techniques currently used in classic epidemiological studies allow selection of single markers of changes of exposure to chronic low dose levels of metal/metaloids mixtures. However, application of proteomic techniques in such studies may allow the selection of new biomarkers of environmental and occupational exposure to heavy metals characterized by high sensitivity and specificity. As presented in our review paper, proteomic techniques in combination with appropriate statistical methods allow the selection of potential markers to estimate the changes in the human body when exposed to those heavy metals.
机译:金属/类金属铅(Pb),镉(Cd)和砷(As)是环境中主要的有毒物质。它们是人类尤其是工业工人中危险暴露的重要来源。接触这些重金属的最严重后果是癌症和心血管疾病。在人体单独接触Pb,Cd和As的研究中,仍然缺乏标志人体内微妙的早期病变的信号。开发高通量技术并使用非侵入性材料是合适的。经典流行病学研究中当前使用的技术允许选择暴露于慢性低剂量水平的金属/类金属混合物的暴露变化的单个标记。但是,蛋白质组学技术在此类研究中的应用可能允许选择环境和职业接触重金属的生物标志物,这些标志物具有高灵敏度和特异性。如我们的综述文件所述,蛋白质组学技术与适当的统计方法相结合,可以选择潜在的标记物来估计暴露于那些重金属时人体的变化。

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