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Chronic Occupational Exposure to Ionizing Radiation Induces Alterations in the Structure and Metabolism of the Heart: A Proteomic Analysis of Human Formalin-Fixed Paraffin-Embedded (FFPE) Cardiac Tissue

机译:慢性职业暴露在电离辐射中诱导心脏结构和代谢的改变:人福尔马林固定石蜡包埋(FFPE)心脏组织的蛋白质组学分析

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摘要

Epidemiological studies on workers employed at the Mayak plutonium enrichment plant have demonstrated an association between external gamma ray exposure and an elevated risk of ischemic heart disease (IHD). In a previous study using fresh-frozen post mortem samples of the cardiac left ventricle of Mayak workers and non-irradiated controls, we observed radiation-induced alterations in the heart proteome, mainly downregulation of mitochondrial and structural proteins. As the control group available at that time was younger than the irradiated group, we could not exclude age as a confounding factor. To address this issue, we have now expanded our study to investigate additional samples using archival formalin-fixed paraffin-embedded (FFPE) tissue. Importantly, the control group studied here is older than the occupationally exposed (>500 mGy) group. Label-free quantitative proteomics analysis showed that proteins involved in the lipid metabolism, sirtuin signaling, mitochondrial function, cytoskeletal organization, and antioxidant defense were the most affected. A histopathological analysis elucidated large foci of fibrotic tissue, myocardial lipomatosis and lymphocytic infiltrations in the irradiated samples. These data highlight the suitability of FFPE material for proteomics analysis. The study confirms the previous results emphasizing the role of adverse metabolic changes in the radiation-associated IHD. Most importantly, it excludes age at the time of death as a confounding factor.
机译:Mayak钚富集植物雇用的工人流行病学研究表明,外部γ射线暴露和缺血性心脏病(IHD)的风险升高。在先前的研究中,使用Mayak工人的心脏左心室和非照射对照的心脏左心室样本,观察到心脏蛋白质组中的辐射诱导的改变,主要是线粒体和结构蛋白的下调。随着当时可获得的对照组比辐照组更年轻,我们不能将年龄排除为混杂因素。为了解决这个问题,我们现在已经扩展了我们的研究,以使用档案福尔马林固定的石蜡包埋(FFPE)组织来调查其他样品。重要的是,研究其研究的对照组比职业暴露(> 500 mgy)组更旧。无标记的定量蛋白质组学分析显示,涉及脂质代谢,Sirtuin信号,线粒体功能,细胞骨骼组织和抗氧化剂防御的蛋白质受到最大影响。组织病理学分析阐明了辐照样品中的纤维化组织,心肌脂质瘤和淋巴细胞浸润的大焦点。这些数据突出了FFPE材料对蛋白质组学分析的适用性。该研究证实了先前的结果,强调了辐射相关的IHD中不利代谢变化的作用。最重要的是,它在死亡时排除了年龄作为一个混杂因素。

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