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Surface character and membranolytic activity of rutile and anatase: two titanium dioxide polymorphs.

机译:金红石和锐钛矿的表面特性和膜分解活性:两种二氧化钛多晶型物。

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摘要

Biological studies of two titanium dioxide polymorphs, rutile and anatase, have produced conflicting results. Generally, the in vivo and in vitro methods used to evaluate pneumoconiotic dusts have shown the polymorphs to be inert, but occasionally both minerals have been reported to produce effects consistent with biologically active minerals. Many of these reports failed to specify which polymorph was used experimentally. While this limited the value of the data, the problem was further compounded by the variation in the surface properties of each polymorph depending on whether the specimen was a naturally occurring mineral or was made synthetically. Five naturally occurring and 11 synthetically produced titanium dioxide specimens were studied. The physical characterisation of each specimen entailed the determination of the polymorph type(s) by continuous scan x ray diffraction and the size distribution by transmission electron microscopy. The ability of each specimen to lyse erythrocytes was determined and compared with quartz. Only two, both synthetic rutiles, were found to be active. The hydrogen bonding ability of the surfaces of these rutiles were compared with inert rutile and quartz. The binding properties of the active rutile have been found to be consistent with those properties associated with biologically active quartz. The surface properties of rutile are the determinants of its activity. Because natural and synthetic rutiles possess different surface properties, they display different activities.
机译:对两种二氧化钛多晶型物金红石和锐钛矿的生物学研究产生了矛盾的结果。通常,用于评估尘肺尘埃尘的体内和体外方法已显示出多晶型物是惰性的,但据报道,两种矿物质偶尔会产生与生物活性矿物质一致的作用。这些报告中有许多都未能说明实验中使用了哪种多晶型物。尽管这限制了数据的价值,但取决于样品是天然存在的矿物还是合成材料,每种多晶型物的表面特性的变化进一步加剧了问题。研究了5个自然产生的和11个合成产生的二氧化钛样品。每个样品的物理特性需要通过连续扫描X射线衍射确定多晶型物类型,并通过透射电子显微镜确定尺寸分布。确定每个标本溶解红细胞的能力,并与石英进行比较。发现只有两种,两种都是合成金红石,具有活性。将这些金红石的表面的氢键合能力与惰性金红石和石英进行了比较。已经发现活性金红石的结合性质与与生物活性石英相关的那些性质一致。金红石的表面性质是其活性的决定因素。由于天然和合成金红石具有不同的表面性质,因此它们表现出不同的活性。

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