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首页> 外文期刊>Journal of Fluorescence >Effect of polymer strengtheners on the local environment of biocompatible glass as probed by fluorescence
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Effect of polymer strengtheners on the local environment of biocompatible glass as probed by fluorescence

机译:荧光探测聚合物增强剂对生物相容性玻璃局部环境的影响

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Mixed silica-calcite matrices were prepared by developing a "low" temperature (sol-gel) method in presence of several biocompatible polymers, thus providing samples with adequate porosity for the flow of biological fluids and also mechanically robust. In order to analyse and characterise the sample's microenvironments, the highly solvatochromic probe Nile red was used, which enabled the role of polymer addition upon local environmental effects in the host media to be elucidated. The polymers used were polyethylene glycol, polymethylmethacrylate and polyethylene. Each matrix was also characterized with respect to microstructure, morphology and pore size via the use of X-ray diffractometry and scanning electron microscopy. The results show that is was possible to obtain, in a controlled way, mixed silica-calcite matrices with a wide range of porosities (important if the material is to be used for scaffold or drug release applications, for example). The spectroscopic behaviour of Nile red when incorporated has confirmed the existence of distinct and specific local polarities within each type of matrix that may determine to a large extent the mechanism of interaction between these matrices and biological molecules.
机译:通过在几种生物相容性聚合物存在下开发“低温”(溶胶-凝胶)方法来制备混合的方解石基质,从而为样品提供了足够的孔隙度以供生物流体流动,并且还具有机械强度。为了分析和表征样品的微环境,使用了高度溶剂化的探针尼罗红,它可以阐明在宿主介质中添加聚合物对局部环境影响的作用。所使用的聚合物是聚乙二醇,聚甲基丙烯酸甲酯和聚乙烯。还通过使用X射线衍射和扫描电子显微镜对每种基质的微观结构,形态和孔径进行了表征。结果表明,可以以受控的方式获得具有广泛孔隙率的混合硅方解石基质(例如,如果该材料用于支架或药物释放应用,则非常重要)。掺入尼罗红的光谱行为已证实每种类型的基质中都存在明显不同的局部极性,这在很大程度上决定了这些基质与生物分子之间相互作用的机制。

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