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Influence of the mechanical properties of biomaterials on degradability, cell behaviors and signaling pathways: current progress and challenges

机译:生物材料力学性能对降解性,细胞行为和信号通路的影响:当前的进展与挑战

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The development of suitable biomaterials with the ability to improve repair and regeneration of human tissues is continuously in progress, and mechanical properties of biomaterials play a critical role in their success in the clinical setting. Both biomaterial degradability and signaling cascades of cell interactions with biomaterials are significantly influenced by the mechanical properties of biomaterials, determining the final repair effect of bio-implants. Actually, the mechanical properties of biomaterials play a critical role in designing and developing medical material products both in research and in practice. Currently, advances in mechanics have provided new possibilities for researchers to investigate and modulate both the substrates and cell behaviors with respect to material perfection in tissue engineering. Achieving convenient and accurate approaches for producing different types of biomaterials is now possible by applying computerized methods. In this review, we have systematically clarified the influence of several selected mechanical properties of biomaterials (including stress/strain, elasticity/stiffness and certain time-dependent mechanical properties) on biomaterial degradability, cell behaviors and signaling pathways. Furthermore, the mechanical design targets and approaches for optimizing the mechanical properties of biomaterials, as well as the challenges and prospects are elaborated. This review will certainly bring up new ideas and possibilities for the field of tissue engineering and regenerative biomaterials.
机译:具有改善人组织修复和再生能力的合适生物材料的发展是不断进行的,并且生物材料的机械性能在临床环境中的成功中起着关键作用。既有生物材料的生物材料可降解性和信号级联与生物材料的相互作用都受到生物材料的力学性质的显着影响,确定生物植入物的最终修复效果。实际上,生物材料的力学性质在研究和实践中的设计和开发医疗材料产品中起着关键作用。目前,机械师的进步为研究人员提供了新的可能性,以研究和调节基板和细胞行为在组织工程中的材料完美。现在通过应用计算机化方法,现​​在可以实现制造不同类型生物材料的方便和准确的方法。在本文中,我们系统地阐明了几种选择的生物材料(包括应力/菌株,弹性/刚度和某些时间依赖性机械性能)对生物材料可降解性,细胞行为和信号传导途径的影响。此外,阐述了用于优化生物材料的机械性能的机械设计靶和方法以及挑战和前景。该审查肯定会为组织工程和再生生物材料领域带来新的思路和可能性。

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