Food Engineering Department, School of Agronomy, Universidade Federal de Goiás, Campus Samambaia, Goiânia CEP 74690-900, Goiás, Brazil.
College of Life Sciences, Xinyang Normal University, Xinyang 464000, China.
Int J Mol Sci. 2021 Jan 18;22(2):903. doi: 10.3390/ijms22020903.
Shortcomings related to the treatment of bone diseases and consequent tissue regeneration such as transplants have been addressed to some extent by tissue engineering and regenerative medicine. Tissue engineering has promoted structures that can simulate the extracellular matrix and are capable of guiding natural bone repair using signaling molecules to promote osteoinduction and angiogenesis essential in the formation of new bone tissues. Although recent studies on developing novel growth factor delivery systems for bone repair have attracted great attention, taking into account the complexity of the extracellular matrix, scaffolding and growth factors should not be explored independently. Consequently, systems that combine both concepts have great potential to promote the effectiveness of bone regeneration methods. In this review, recent developments in bone regeneration that simultaneously consider scaffolding and growth factors are covered in detail. The main emphasis in this overview is on delivery strategies that employ polymer-based scaffolds for spatiotemporal-controlled delivery of both single and multiple growth factors in bone-regeneration approaches. From clinical applications to creating alternative structural materials, bone tissue engineering has been advancing constantly, and it is relevant to regularly update related topics.
组织工程和再生医学在一定程度上解决了与骨疾病治疗和随后的组织再生相关的缺陷,如移植。组织工程促进了能够模拟细胞外基质的结构,并能够使用信号分子引导天然骨修复,促进新骨组织形成所必需的成骨诱导和血管生成。尽管最近关于开发新型生长因子骨修复输送系统的研究引起了极大关注,但考虑到细胞外基质的复杂性,支架和生长因子不应单独探索。因此,结合这两个概念的系统具有很大的潜力来提高骨再生方法的有效性。在这篇综述中,详细介绍了同时考虑支架和生长因子的骨再生的最新进展。本综述的主要重点是采用聚合物基支架的输送策略,用于在骨再生方法中单种和多种生长因子的时空控制输送。从临床应用到创造替代结构材料,骨组织工程一直在不断推进,因此定期更新相关主题非常重要。