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Interaction between erythrocyte plasma membrane and silicate dusts.

机译:红细胞质膜和硅酸盐粉尘之间的相互作用。

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摘要

Lysis of erythrocytes in vitro leading to release of hemoglobin has often been used as a convenient test system for predictive toxicological evaluation of noxious particulates encountered as pollutants in occupational and environmental atmospheres. However, in spite of several studies with silica and silicate dusts, the exact biochemical mechanism for membrane damage is not clear. Therefore, detailed biochemical studies were conducted. Screening of a large number of fugitive dust samples indicated that the dissolution of silica under assay conditions has a qualitative relation to hemolytic potency. The strong capacity of slate mine dust to cause hemolysis was studied in detail. The kinetics of lysis indicated that on prolonged contact the adsorption of hemoglobin altered the lytic index. Coating of dust with serum, albumin or polyvinylpyrrolidone (PVP) and some lipids reduced lytic potency markedly, while EDTA was ineffective. Altering the surface chemistry of dust by heating, alkali treatment, washing with water, and acid washing reduced hemolysis in increasing order. Thus, chemical interactions between dusts and membranes are involved in hemolysis, and it may be concluded that the interaction of dust constituents with biomembranes is one of the likely mechanisms involved in the toxicity of particulate air pollutants.
机译:体外导致血红蛋白释放的红细胞裂解经常被用作方便的测试系统,用于对在职业和环境中作为污染物遇到的有害微粒进行预测毒理学评估。然而,尽管已经对二氧化硅和硅酸盐粉尘进行了一些研究,但是膜损伤的确切生化机理尚不清楚。因此,进行了详细的生化研究。大量逃逸性粉尘样品的筛选表明,在测定条件下二氧化硅的溶解与溶血能力有定性关系。详细研究了板岩粉尘的强大溶血能力。裂解动力学表明,长时间接触后,血红蛋白的吸附改变了裂解指数。用血清,白蛋白或聚乙烯吡咯烷酮(PVP)和一些脂质覆盖灰尘显着降低了溶解能力,而EDTA无效。通过加热,碱处理,水洗和酸洗改变粉尘的表面化学性质,可减少溶血的顺序。因此,粉尘与膜之间的化学相互作用参与了溶血作用,可以得出结论,粉尘成分与生物膜的相互作用是涉及颗粒空气污染物毒性的可能机制之一。

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