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基于二氧化硅的生物陶瓷领域中的有机-无机杂化材料的医学应用。

Medical applications of organic-inorganic hybrid materials within the field of silica-based bioceramics.

机构信息

Departamento de Química Inorgánica y Bioinorgánica, Facultad de Farmacia, Universidad Complutense de Madrid, Plaza Ramón y Cajal s/n, 28040 Madrid, Spain.

出版信息

Chem Soc Rev. 2011 Feb;40(2):596-607. doi: 10.1039/c0cs00025f. Epub 2010 Nov 4.

Abstract

Research on bioceramics has evolved from the use of inert materials for mere substitution of living tissues towards the development of third-generation bioceramics aimed at inducing bone tissue regeneration. Within this context hybrid bioceramics have remarkable features resulting from the synergistic combination of both inorganic and organic components that make them suitable for a wide range of medical applications. Certain bioceramics, such as ordered mesoporous silicas, can exhibit different kind of interaction with organic molecules to develop different functions. The weak interaction of these host matrixes with drug molecules confined in the mesoporous channels allows these hybrid systems to be used as controlled delivery devices. Moreover, mesoporous silicas can be used to fabricate three (3D)-dimensional scaffolds for bone tissue engineering. In this last case, different osteoinductive agents (peptides, hormones and growth factors) can be strongly grafted to the bioceramic matrix to act as attracting signals for bone cells to promote bone regeneration process. Finally, recent research examples of organic-inorganic hybrid bioceramics, such as stimuli-responsive drug delivery systems and nanosystems for targeting of cancer cells and gene transfection, are also tackled in this tutorial review (64 references).

摘要

生物陶瓷的研究已经从仅仅使用惰性材料来替代活组织发展到了第三代生物陶瓷,旨在诱导骨组织再生。在这种背景下,混合生物陶瓷具有显著的特点,这是由于无机和有机成分的协同组合,使它们适用于广泛的医疗应用。某些生物陶瓷,如有序介孔硅,可以与有机分子发生不同类型的相互作用,从而开发出不同的功能。这些主体基质与限制在介孔通道中的药物分子的弱相互作用,允许这些混合系统用作控制释放装置。此外,介孔硅可以用于制造用于骨组织工程的三维支架。在后一种情况下,不同的成骨诱导剂(肽、激素和生长因子)可以强烈地接枝到生物陶瓷基质上,作为吸引骨细胞的信号,以促进骨再生过程。最后,本综述还讨论了有机-无机杂化生物陶瓷的最新研究实例,如刺激响应药物输送系统和用于靶向癌细胞和基因转染的纳米系统(64 篇参考文献)。

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