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Biological Monitoring of Hexavalent Chromium and Serum Levels of the Senescence Biomarker Apolipoprotein J/Clusterin in Welders

机译:焊工中衰老生物标记载脂蛋白J /簇蛋白的六价铬和血清水平的生物监测

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摘要

Welding fumes contain metals and other toxic substances known or strongly suspected to be related with oxidative stress and premature cellular senescence. Apolipoprotein J/Clusterin (ApoJ/CLU) is a glycoprotein that is differentially regulated in various physiological and disease states including ageing and age-related diseases. In vitro data showed that exposure of human diploid fibroblasts to hexavalent chromium (Cr(VI)) resulted in premature senescence and significant upregulation of the ApoJ/CLU protein. In this study we analyzed blood and urine samples from shipyard industry welders being exposed to different levels of Cr(VI) over a period of five months in order to assay in vivo the relation of ApoJ/CLU serum levels with Cr(VI). Our findings confirmed the previously reported in vitro data since reduction of Cr levels, after a worksite intervention, associated with lower levels of ApoJ/CLU serum levels. We concluded that the human ApoJ/CLU gene is responsive to the acute in vivo oxidative stress induced by heavy metals such as hexavalent chromium.
机译:焊接烟气中含有金属和其他有毒物质,这些物质已知或被强烈怀疑与氧化应激和细胞早衰有关。载脂蛋白J /簇蛋白(ApoJ / CLU)是一种糖蛋白,在各种生理和疾病状态(包括衰老和与年龄相关的疾病)中受到差异调节。体外数据显示,人类二倍体成纤维细胞暴露于六价铬(Cr(VI))导致过早衰老和ApoJ / CLU蛋白的显着上调。在这项研究中,我们分析了在五个月的时间内暴露于不同水平的Cr(VI)的造船厂焊工的血液和尿液样本,以便在体内测定ApoJ / CLU血清水平与Cr(VI)的关系。我们的发现证实了先前报道的体外数据,因为在工作场所进行干预后,Cr含量降低与ApoJ / CLU血清水平降低有关。我们得出的结论是,人类ApoJ / CLU基因对重金属(例如六价铬)诱导的急性体内氧化应激有反应。

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