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Scaffold Structural Microenvironmental Cues to Guide Tissue Regeneration in Bone Tissue Applications

机译:支架结构微环境提示引导骨组织应用中的组织再生

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摘要

In the process of bone regeneration, new bone formation is largely affected by physico-chemical cues in the surrounding microenvironment. Tissue cells reside in a complex scaffold physiological microenvironment. The scaffold should provide certain circumstance full of structural cues to enhance multipotent mesenchymal stem cell (MSC) differentiation, osteoblast growth, extracellular matrix (ECM) deposition, and subsequent new bone formation. This article reviewed advances in fabrication technology that enable the creation of biomaterials with well-defined pore structure and surface topography, which can be sensed by host tissue cells (esp., stem cells) and subsequently determine cell fates during differentiation. Three important cues, including scaffold pore structure (i.e., porosity and pore size), grain size, and surface topography were studied. These findings improve our understanding of how the mechanism scaffold microenvironmental cues guide bone tissue regeneration.
机译:在骨再生过程中,新的骨形成在很大程度上受到周围微环境中的物理化学线索的影响。组织细胞位于复杂的支架生理微环境中。支架应提供满足结构提示的某些情况,以增强多能间充质干细胞(MSC)分化,成骨细胞生长,细胞外基质(ECM)沉积和随后的新骨形成。本文审查了制造技术的进步,使得能够产生具有明确定义的孔隙结构和表面形貌的生物材料,其可以通过宿主组织细胞(ESP。,干细胞)来感测,并且随后在分化期间确定细胞率。研究了三个重要提示,包括脚手架孔结构(即孔隙率和孔径),晶粒尺寸和表面形貌。这些调查结果改善了我们对机制脚手架微环境提示如何引导骨组织再生的理解。

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