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具有改善机械性能的生物活性有机/无机杂化材料。

Bioactive organic/inorganic hybrids with improved mechanical performance.

作者信息

Li Ailing, Shen Hong, Ren Huihui, Wang Chen, Wu Decheng, Martin Richard A, Qiu Dong

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Polymer Physics and Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Mater Chem B. 2015 Feb 21;3(7):1379-1390. doi: 10.1039/c4tb01776e. Epub 2015 Jan 9.

Abstract

New sol-gel functionalized poly-ethylene glycol (PEGM)/SiO-CaO hybrids were prepared with interpenetrating networks of silica and PEGM through the formation of Si-O-Si bonds. Bioactive and mechanical properties were investigated for a series of hybrids containing varying organic/inorganic ratios and PEG molecular weights. In contrast to the unmodified PEG/SiO-CaO hybrids, which rapidly dissolved and crumbled, the epoxy modified hybrids exhibited good mechanical properties and bioactivity. The compressive strength and Young's modulus were greater for higher molecular weight PEGM hybrids (PEGM600 compared to PEGM300). Compressive strengths of 138 MPa and 81 MPa were found for the 50 : 50 and 60 : 40 organic/inorganic hybrid samples respectively, which are comparable with cortical bone. Young's modulus values of ∼800 MPa were obtained for the 50 : 50 and 60 : 40 organic/inorganic hybrids. Bioactivity tests were conducted by immersing the hybrids into simulated body fluid and observing the formation of apatite. Apatite formation was observed within 24 hours of immersion. PEGM600 hybrids showed enhanced apatite formation compared to PEGM300 hybrids. Increased apatite formation was observed with increasing organic/inorganic ratio. 70 : 30 and 60 : 40 hybrids exhibited the greatest apatite formation. All PEGM hybrids samples had good cell viability and proliferation. The 60 : 40 PEGM600 hybrids displayed the optimal combination of bioactivity and mechanical strength. The bioactivity of these hybrids, combined with the enhanced mechanical properties, demonstrate that these materials have significant potential for bone regeneration applications.

摘要

通过形成Si - O - Si键,制备了具有二氧化硅和聚乙二醇甲基丙烯酸酯(PEGM)互穿网络的新型溶胶 - 凝胶功能化聚乙二醇(PEGM)/SiO - CaO杂化材料。对一系列含有不同有机/无机比例和PEG分子量的杂化材料的生物活性和力学性能进行了研究。与未改性的PEG/SiO - CaO杂化材料迅速溶解和破碎不同,环氧改性的杂化材料表现出良好的力学性能和生物活性。较高分子量的PEGM杂化材料(PEGM600与PEGM300相比)的抗压强度和杨氏模量更大。50 : 50和60 : 40有机/无机杂化样品的抗压强度分别为138 MPa和81 MPa,与皮质骨相当。50 : 50和60 : 40有机/无机杂化材料的杨氏模量值约为800 MPa。通过将杂化材料浸入模拟体液并观察磷灰石的形成来进行生物活性测试。在浸入24小时内观察到磷灰石形成。与PEGM300杂化材料相比,PEGM600杂化材料显示出增强的磷灰石形成。随着有机/无机比例的增加,观察到磷灰石形成增加。70 : 30和60 : 40杂化材料表现出最大的磷灰石形成。所有PEGM杂化材料样品都具有良好的细胞活力和增殖能力。60 : 40的PEGM600杂化材料表现出生物活性和机械强度的最佳组合。这些杂化材料的生物活性与增强的力学性能相结合,表明这些材料在骨再生应用中具有巨大潜力。

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