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Porous magnesium-based scaffolds for tissue engineering.

机译:用于组织工程的多孔镁基支架。

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摘要

Significant amount of research efforts have been dedicated to the development of scaffolds for tissue engineering. Although at present most of the studies are focused on non-load bearing scaffolds, many scaffolds have also been investigated for hard tissue repair. In particular, metallic scaffolds are being studied for hard tissue engineering due to their suitable mechanical properties. Several biocompatible metallic materials such as stainless steels, cobalt alloys, titanium alloys, tantalum, nitinol and magnesium alloys have been commonly employed as implants in orthopedic and dental treatments. They are often used to replace and regenerate the damaged bones or to provide structural support for healing bone defects. Among the common metallic biomaterials, magnesium (Mg) and a number of its alloys are effective because of their mechanical properties close to those of human bone, their natural ionic content that may have important functional roles in physiological systems, and their in vivo biodegradation characteristics in body fluids. Due to such collective properties, Mg based alloys can be employed as biocompatible, bioactive, and biodegradable scaffolds for load-bearing applications. Recently, porous Mg and Mg alloys have been specially suggested as metallic scaffolds for bone tissue engineering. With further optimization of the fabrication techniques, porous Mg is expected to make a promising hard substitute scaffold. The present review covers research conducted on the fabrication techniques, surface modifications, properties and biological characteristics of Mg alloys based scaffolds. Furthermore, the potential applications, challenges and future trends of such degradable metallic scaffolds are discussed in detail.
机译:大量的研究工作已致力于组织工程支架的开发。尽管目前大多数研究都集中在非承重支架上,但许多支架也已被研究用于硬组织修复。特别地,由于其合适的机械性能,正在研究金属支架用于硬组织工程。几种生物相容性金属材料,例如不锈钢,钴合金,钛合金,钽,镍钛合金和镁合金,通常在整形外科和牙科治疗中用作植入物。它们通常用于替换和再生受损的骨头或为愈合骨缺损提供结构支撑。在常见的金属生物材料中,镁(Mg)及其多种合金之所以有效,是因为它们的机械性能接近人体骨骼,其天然离子含量可能在生理系统中起重要的作用,并且其体内生物降解特性在体液中。由于这种集体性质,Mg基合金可用作承重应用的生物相容性,生物活性和可生物降解的支架。最近,多孔镁和镁合金被特别建议用作骨组织工程的金属支架。随着制造技术的进一步优化,多孔镁有望成为有前途的硬替代支架。本综述涵盖了对基于镁合金的脚手架的制造技术,表面改性,性能和生物学特性进行的研究。此外,详细讨论了这种可降解金属支架的潜在应用,挑战和未来趋势。

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