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Biofabrication and Bone Tissue Regeneration: Cell Source Approaches and Challenges

机译:生物制造和骨组织再生:细胞来源方法和挑战

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摘要

The growing occurrence of bone disorders and the increase in aging population have resulted in the need for more effective therapies to meet this request. Bone tissue engineering strategies, by combining biomaterials, cells, and signaling factors, are seen as alternatives to conventional bone grafts for repairing or rebuilding bone defects. Indeed, skeletal tissue engineering has not yet achieved full translation into clinical practice because of several challenges. Bone biofabrication by additive manufacturing techniques may represent a possible solution, with its intrinsic capability for accuracy, reproducibility, and customization of scaffolds as well as cell and signaling molecule delivery. This review examines the existing research in bone biofabrication and the appropriate cells and factors selection for successful bone regeneration as well as limitations affecting these approaches. Challenges that need to be tackled with the highest priority are the obtainment of appropriate vascularized scaffolds with an accurate spatiotemporal biochemical and mechanical stimuli release, in order to improve osseointegration as well as osteogenesis.
机译:骨骼疾病的发生率不断增长,人口老龄化增加,因此需要更有效的疗法来满足这一要求。通过结合生物材料,细胞和信号传导因子,骨组织工程策略被视为替代传统骨移植物以修复或重建骨缺损的方法。确实,由于一些挑战,骨骼组织工程尚未完全转化为临床实践。通过增材制造技术进行的骨生物制造可能代表了一种可能的解决方案,其固有的能力包括准确性,可重复性,支架的定制化以及细胞和信号分子的递送。这篇综述审查了骨生物加工方面的现有研究以及成功进行骨再生的合适细胞和因子选择以及影响这些方法的局限性。需要优先考虑的挑战是获得具有正确的时空生化和机械刺激释放的合适的血管化支架,以改善骨整合和成骨作用。

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