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Recent advances in the application of mesoporous silica-based nanomaterials for bone tissue engineering

机译:介孔二氧化硅基纳米材料应用近期进展骨组织工程

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摘要

Silica nanomaterials (SNMs) and their composites have recently been investigated as scaffolds for bone tissue engineering. SNM scaffolds possess the ability to encourage bone cell growth and also allow the simultaneous delivery of biologically active biomolecules that are encapsulated in the mesopores. Their high mechanical strength, low cytotoxicity, ability to stimulate both the proliferation and osteogenic differentiation of progenitor cells make the SNMs appropriate scaffolds. Their physiochemical properties facilitate the cell spreading process, allow easy access to nutrients and help the cell-cell communication process during bone tissue engineering. The ability to deliver small biomolecules, such as dexamethasone, different growth factors, vitamins and mineral ions depends on the morphology, porosity, and crystallinity of SNMs and their composites with other polymeric materials. In this review, the abilities of SNMs to perform as suitable scaffolds for bone tissue engineering are comprehensively discussed.
机译:最近被研究了二氧化硅纳米材料(SNMS)及其复合材料作为骨组织工程的支架。 SNM支架具有促进骨细胞生长的能力,并且还允许同时递送包封在中孔中的生物活性生物分子。它们的高机械强度,低细胞毒性,刺激祖细胞增殖和骨质发生分化的能力使得SNMS适当的支架。它们的物理化学性质有助于细胞扩散过程,允许容易地获得营养素,并在骨组织工程中帮助细胞间通信过程。提供小型生物分子的能力,例如地塞米松,不同的生长因子,维生素和矿物离子取决于SNM的形态,孔隙率和与其它聚合物材料的复合材料的形态,孔隙率和结晶度。在本文中,全面讨论了SNMS作为合适支架进行骨组织工程的合适支架的能力。

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