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玻璃态矿物纤维化学成分变化对大鼠肺部生物持久性的影响及对监管的影响。

Impact of variations in the chemical composition of vitreous mineral fibers on biopersistence in rat lungs and consequences for regulation.

机构信息

Fraunhofer Institute for Toxicology and Experimental Medicine, Hannover, Germany.

出版信息

Inhal Toxicol. 2010 Aug;22(10):817-27. doi: 10.3109/08958378.2010.483771.

Abstract

The chronic toxicity of vitreous fibers is substantially dependent on their biopersistence. Removal of fibers deposited in the respiratory tract is dependent on a combination of physiological clearance processes (like mechanical translocation) and physico-chemical processes like dissolution and leaching. This publication presents data of about 60 different fibers investigated in the biopersistence test which was standardized in the European Union. This test is based on in vivo investigation of biopersistence after intratracheal instillation in rats of a respirable fiber fraction, and it is a basis for the regulatory classification of vitreous fibers. Regression analysis is carried out employing the data of glass fiber compositions and the corresponding results of biopersistence tests (half-times). The study leads to a model that enables prediction of half-times for stone wool fibers as well as for glass wool fibers on the basis of their chemical composition. The aim of this paper was to investigate the stringency of the existing limits for the range of the chemical composition of glass and stone wools in view of the currently available data base. For regulatory purposes, however, this model is currently not sufficient to replace biopersistence tests completely.

摘要

玻璃纤维的慢性毒性在很大程度上取决于其生物持久性。呼吸道中沉积纤维的清除取决于生理清除过程(如机械转移)和物理化学过程(如溶解和浸出)的结合。本出版物介绍了在欧盟标准化的生物持久性试验中研究的约 60 种不同纤维的数据。该试验基于气管内滴注可吸入纤维部分后在大鼠体内进行的生物持久性研究,是玻璃纤维分类的监管依据。采用玻璃纤维成分数据和生物持久性试验(半衰期)的相应结果进行回归分析。该研究提出了一个模型,能够根据化学成分预测岩棉纤维和玻璃棉纤维的半衰期。本文的目的是根据现有数据库,研究玻璃纤维和岩棉纤维化学成分范围的现行限值的严格程度。然而,出于监管目的,该模型目前还不足以完全替代生物持久性试验。

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