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对曾接触石棉工人肺部含铁小体和无涂层纤维含量的比较。

A comparison of the ferruginous body and uncoated fiber content in the lungs of former asbestos workers.

作者信息

Dodson R F, Williams M G, O'Sullivan M F, Corn C J, Greenberg S D, Hurst G A

出版信息

Am Rev Respir Dis. 1985 Jul;132(1):143-7. doi: 10.1164/arrd.1985.132.1.143.

Abstract

Tissue samples from 12 former asbestos workers were digested and analyzed for ferruginous body and uncoated fiber populations. It was noted that there were large numbers of nonasbestos fibers in each of the samples. In some samples, these fibers constituted over 80% of the total uncoated fibers, and they could greatly influence the data as to asbestos content of the tissue unless differentiated by light and electron microscopic techniques, such as X-ray energy-dispersive analysis. There were great variations in the numbers of uncoated fibers per ferruginous body between the individual workers. The digested samples from lungs of 2 workers yielded no ferruginous bodies by light microscopy, even though these samples by electron microscopy contained respective loads of 780,000 and 1.2 million uncoated amphibole fibers per gram. Light microscopy examination of adjacent tissues confirmed mild fibrosis in both workers. Ferruginous bodies serve as a general marker for asbestos exposure. However, our data suggest that their absence in tissue with interstitial fibrosis from a worker with previous occupational exposure may not be sufficiently conclusive to rule out asbestos-induced disease. Rather, as shown by our data, individual exceptions may require correlated analysis by analytical electron microscopy in order to define particulate load and support the diagnosis of the disease.

摘要

对12名曾接触石棉的工人的组织样本进行消化处理,并分析其中的含铁小体和无涂层纤维数量。注意到每个样本中都有大量的非石棉纤维。在一些样本中,这些纤维占无涂层纤维总数的80%以上,除非通过光镜和电镜技术(如X射线能谱分析)进行区分,否则它们会极大地影响组织中石棉含量的数据。个体工人之间每个含铁小体的无涂层纤维数量差异很大。两名工人肺部的消化样本在光镜下未发现含铁小体,尽管这些样本在电镜下每克分别含有780,000和120万根无涂层闪石纤维。对相邻组织的光镜检查证实两名工人均有轻度纤维化。含铁小体是石棉暴露的一般标志物。然而,我们的数据表明,在有既往职业暴露史且患有间质性纤维化的工人组织中未发现含铁小体,这可能不足以确凿地排除石棉所致疾病。相反,如我们的数据所示,个别例外情况可能需要通过分析电子显微镜进行相关分析,以确定颗粒负荷并支持疾病诊断。

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