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介孔生物活性玻璃:结构特征、药物/生长因子递送和骨再生应用。

Mesoporous bioactive glasses: structure characteristics, drug/growth factor delivery and bone regeneration application.

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure , Shanghai Institute of Ceramics, Chinese Academy of Sciences , Shanghai 200050 , People's Republic of China.

出版信息

Interface Focus. 2012 Jun 6;2(3):292-306. doi: 10.1098/rsfs.2011.0121. Epub 2012 Mar 21.

Abstract

The impact of bone diseases and trauma in the whole world has increased significantly in the past decades. Bioactive glasses are regarded as an important bone regeneration material owing to their generally excellent osteoconductivity and osteostimulativity. A new class of bioactive glass, referred to as mesoporous bioglass (MBG), was developed 7 years ago, which possess a highly ordered mesoporous channel structure and a highly specific surface area. The study of MBG for drug/growth factor delivery and bone tissue engineering has grown significantly in the past several years. In this article, we review the recent advances of MBG materials, including the preparation of different forms of MBG, composition-structure relationship, efficient drug/growth factor delivery and bone tissue engineering application. By summarizing our recent research, the interaction of MBG scaffolds with bone-forming cells, the effect of drug/growth factor delivery on proliferation and differentiation of tissue cells and the in vivo osteogenesis of MBG scaffolds are highlighted. The advantages and limitations of MBG for drug delivery and bone tissue engineering have been compared with microsize bioactive glasses and nanosize bioactive glasses. The future perspective of MBG is discussed for bone regeneration application by combining drug delivery with bone tissue engineering and investigating the in vivo osteogenesis mechanism in large animal models.

摘要

在过去的几十年中,全世界的骨病和创伤的影响显著增加。生物活性玻璃因其良好的骨传导性和骨诱导性而被认为是一种重要的骨再生材料。7 年前开发了一类新型的生物活性玻璃,称为介孔生物玻璃(MBG),其具有高度有序的介孔通道结构和极高的比表面积。近年来,MBG 在药物/生长因子传递和骨组织工程中的研究有了显著的增长。在本文中,我们综述了 MBG 材料的最新进展,包括不同形式的 MBG 的制备、组成-结构关系、高效药物/生长因子传递和骨组织工程应用。通过总结我们最近的研究,突出了 MBG 支架与成骨细胞的相互作用、药物/生长因子传递对组织细胞增殖和分化的影响以及 MBG 支架的体内成骨作用。还将 MBG 用于药物传递和骨组织工程的结合,以及在大型动物模型中研究体内成骨机制,探讨 MBG 在骨再生应用中的未来前景。

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