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Effect of microporosity on scaffolds for bone tissue engineering

机译:微孔对骨组织工程支架的影响

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Microporosity has a critical role in improving the osteogenesis of scaffolds for bone tissue engineering. Although the exact mechanism, by which it promotes new bone formation, is not well recognized yet, the related hypothesis can be found in many previous studies. This review presents those possible mechanisms about how the microporosity enhances the osteogenic-related functions of cells in vitro and the osteogenic activity of scaffolds in vivo. In summary, the increased specific surface areas by microporosity can offer more protein adsorption sites and accelerate the release of degradation products, which facilitate the interactions between scaffolds and cells. Meanwhile, the unique surface properties of microporous scaffolds have a considerable effect on the protein adsorption. Moreover, capillary force generated by the microporosity can improve the attachment of bone-related cells on the scaffolds surface, and even make the cells achieve penetration into the micropores smaller than them. This review also pays attention to the relationship between the biological and mechanical properties of microporous scaffolds. Although lots of achievements have been obtained, there is still a lot of work to do, some of which has been proposed in the conclusions and perspectives part.
机译:微孔性在改善用于骨组织工程的支架的成骨中起关键作用。尽管尚不清楚其促进新骨形成的确切机制,但相关的假设可以在许多先前的研究中找到。这篇综述提出了关于微孔性如何增强体外细胞的成骨相关功能和体内支架的成骨活性的那些可能机制。总之,通过微孔增加的比表面积可以提供更多的蛋白质吸附位点,并加速降解产物的释放,从而促进支架与细胞之间的相互作用。同时,微孔支架的独特表面性质对蛋白质吸附有相当大的影响。而且,由微孔产生的毛细作用力可以改善骨相关细胞在支架表面上的附着,甚至可以使细胞渗透到比其小的微孔中。这篇综述还关注微孔支架的生物学和力学性能之间的关系。尽管已经取得了许多成就,但仍有许多工作要做,其中一些已在结论和观点部分中提出。

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