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Composite Biomaterials Based on Sol-Gel Mesoporous Silicate Glasses: A Review

机译:溶胶-凝胶介孔硅酸盐玻璃复合生物材料的研究进展

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摘要

Bioactive glasses are able to bond to bone and stimulate the growth of new tissue while dissolving over time, which makes them ideal materials for regenerative medicine. The advent of mesoporous glasses, which are typically synthesized via sol-gel routes, allowed researchers to develop a broad and versatile class of novel biomaterials that combine superior bone regenerative potential (compared to traditional melt-derived glasses) with the ability of incorporating drugs and various biomolecules for targeted therapy in situ. Mesoporous glass particles can be directly embedded as a bioactive phase within a non-porous (e.g., microspheres), porous (3D scaffolds) or injectable matrix, or be processed to manufacture a surface coating on inorganic or organic (macro)porous substrates, thereby obtaining hierarchical structures with multiscale porosity. This review provides a picture of composite systems and coatings based on mesoporous glasses and highlights the challenges for the future, including the great potential of inorganic–organic hybrid sol-gel biomaterials.
机译:生物活性玻璃能够与骨骼粘合并刺激新组织的生长,同时随着时间的流逝溶解,这使其成为再生医学的理想材料。中孔玻璃的出现,通常是通过溶胶-凝胶途径合成的,这使得研究人员能够开发出广泛而通用的新型生物材料,这些材料将优异的骨再生潜能(与传统的熔融衍生玻璃相比)与掺入药物的能力相结合。各种生物分子用于原位靶向治疗。介孔玻璃颗粒可以作为生物活性相直接包埋在无孔(例如微球),多孔(3D支架)或可注射基质中,也可以进行加工以在无机或有机(宏观)多孔基材上制造表面涂层,从而获得具有多尺度孔隙度的分层结构。这篇综述提供了基于中孔玻璃的复合体系和涂料的图片,并着重指出了未来的挑战,包括无机-有机杂化溶胶-凝胶生物材料的巨大潜力。

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