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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >The effect of a photopolymerizable poly(e-caprolactone-co-glycolide) matrix on the cement reactions of tetracaicium phosphate and tetracalcium phosphate-monocalcium phosphate monohydrate mixtures
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The effect of a photopolymerizable poly(e-caprolactone-co-glycolide) matrix on the cement reactions of tetracaicium phosphate and tetracalcium phosphate-monocalcium phosphate monohydrate mixtures

机译:可光聚合的聚(ε-己内酯-共-乙交酯)基质对磷酸四钙与磷酸四钙-磷酸一钙一水合物混合物的水泥反应的影响

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In this study, the influence of a biodegradable polymer matrix on the conversion of tetracalcium phosphate (TTCP) or TTCP-monocalcium phosphate monohydrate (MCPM) powders was investigated. As a reference, the properties of three calcium phosphate cements (CPCs) based on TTCP or TTCP-MCPM mixtures were discussed. Additionally, the influence of these calcium phosphate (CP) reacting powders on the polymer degradation was studied. Composites were formulated by mixing cross-linkable dimethacrylates of the 6-caprolactone/glycolide co-polymer with hydroxyethylmethacrylate, a photo-initiator and TTCP or TTCP-MCPM. The composite samples were set by visible light irradiation. CPC and composite samples were immersed in HEPES at 37 °C. The CPC based on TTCP converted to a carbonated apatite. Adding MCPM to the TTCP powder improved the conversion of TTCP. By varying the MCPM/TTCP ratio it was possible to tailor the conversion reactions so that an apatitic phase could be formed via intermediate products like DPC, DCPD and OCR In the composites, a mutual interaction between the CP reacting powders and the polymer was observed. The co-polymer and its degradation products influenced the conversion reactions of the CP reacting powders. The degradation products tend to enhance the TTCP conversion after a long immersion time. The conversion of the TTCP-MCPM mixtures was retarded by the polymer matrix although the intermediate products were not altered. The basicity or acidity of the CP reacting powders and their conversion reactions were the main cause for the retarded polymer degradation, which was more pronounced when the basicity of the CP reacting powders increased.
机译:在这项研究中,研究了可生物降解的聚合物基质对磷酸四钙(TTCP)或TTCP-磷酸一钙一水合物(MCPM)粉末转化率的影响。作为参考,讨论了基于TTCP或TTCP-MCPM混合物的三种磷酸钙水泥(CPC)的性能。此外,研究了这些磷酸钙(CP)反应粉末对聚合物降解的影响。通过将6-己内酯/乙交酯共聚物的可交联二甲基丙烯酸酯与甲基丙烯酸羟乙酯,光引发剂和TTCP或TTCP-MCPM混合来配制复合材料。通过可见光照射设定复合样品。将CPC和复合材料样品浸入37°C的HEPES中。基于TTCP的CPC转化为碳酸磷灰石。在TTCP粉末中添加MCPM可以改善TTCP的转化率。通过改变MCPM / TTCP比率,可以调整转化反应,从而可以通过DPC,DCPD和OCR等中间产物形成脂溶相。在复合物中,观察到CP反应粉末与聚合物之间的相互作用。共聚物及其降解产物影响CP反应粉末的转化反应。长时间浸泡后,降解产物往往会提高TTCP的转化率。尽管中间产物没有改变,但聚合物基质阻碍了TTCP-MCPM混合物的转化。 CP反应粉末的碱度或酸度以及它们的转化反应是聚合物降解延迟的主要原因,当CP反应粉末的碱度增加时,这种现象尤为明显。

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