可生物降解镁基血管支架的研究与发展策略综述。

Jialin Niu, Hua Huang, Jia Pei, Zhaohui Jin, Shaokang Guan, Guangyin Yuan, Gy, Jn, Sg, Jn, Hh, Jp, Jn, Gy, Zj, Jn, Gy
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引用次数: 2

摘要

镁合金是生物可降解血管支架的理想材料,可被人体完全吸收,具有良好的生物安全性和力学性能。然而,快速的腐蚀速度和过度的局部腐蚀,以及支架微管制备和加工中的挑战,限制了镁基血管支架的临床应用。本文综述了生物可降解镁基血管支架的研究进展,包括镁合金设计、高精度微管加工、支架形状优化和功能涂层制备。特别是,根据我们的研究经验,提出了可生物降解镁合金设计的三位一体原则,这需要在设计新的血管支架应用的可生物降解镁合金时考虑三个关键方面,即生物相容性和生物安全性、力学性能和生物降解性。本文综述对可生物降解镁合金血管支架的设计与开发具有一定的启发作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Research and development strategy for biodegradable magnesium-based vascular stents: a review.

Research and development strategy for biodegradable magnesium-based vascular stents: a review.

Research and development strategy for biodegradable magnesium-based vascular stents: a review.

Research and development strategy for biodegradable magnesium-based vascular stents: a review.

Magnesium alloys are an ideal material for biodegradable vascular stents, which can be completely absorbed in the human body, and have good biosafety and mechanical properties. However, the rapid corrosion rate and excessive localized corrosion, as well as challenges in the preparation and processing of microtubes for stents, are restricting the clinical application of magnesium-based vascular stents. In the present work we will give an overview of the recent progresses on biodegradable magnesium based vascular stents including magnesium alloy design, high-precision microtubes processing, stent shape optimisation and functional coating preparation. In particular, the Triune Principle in biodegradable magnesium alloy design is proposed based on our research experience, which requires three key aspects to be considered when designing new biodegradable magnesium alloys for vascular stents application, i.e. biocompatibility and biosafety, mechanical properties, and biodegradation. This review hopes to inspire the future studies on the design and development of biodegradable magnesium alloy-based vascular stents.

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