骨生成的仿生支架。

Nance Yuan, Kameron S. Rezzadeh, Justine C. Lee
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引用次数: 22

摘要

骨骼再生医学作为一个研究领域出现,以解决继发于先天性、创伤性和肿瘤后疾病的大量骨缺陷。虽然自体骨移植已经成为骨缺损重建的金标准,但供体部位的发病率仍然是一个显著的限制。为了解决这些限制,当代骨组织工程研究的目标是利用支架材料在确定的三维空间内递送成骨细胞和生长因子。以骨为模板,在支架工程中的仿生策略将有机和无机成分结合在一个最佳配置中,以支持骨诱导和骨传导。本文综述了各种结构和功能方面的考虑背后的发展有效的仿生支架成骨和重点策略,以促进成骨。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomimetic Scaffolds for Osteogenesis.
Skeletal regenerative medicine emerged as a field of investigation to address large osseous deficiencies secondary to congenital, traumatic, and post-oncologic conditions. Although autologous bone grafts have been the gold standard for reconstruction of skeletal defects, donor site morbidity remains a significant limitation. To address these limitations, contemporary bone tissue engineering research aims to target delivery of osteogenic cells and growth factors in a defined three dimensional space using scaffolding material. Using bone as a template, biomimetic strategies in scaffold engineering unite organic and inorganic components in an optimal configuration to both support osteoinduction as well as osteoconduction. This article reviews the various structural and functional considerations behind the development of effective biomimetic scaffolds for osteogenesis and highlights strategies for enhancing osteogenesis.
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