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可降解Mg-Nd-Zn-Zr合金夹的结构优化及体外腐蚀分析

Structural optimization and in vitro corrosion analysis of biodegradable Mg-Nd-Zn-Zr alloy clip.

作者信息

Mao Lin, Zhou Yujie, Zheng Xin, Cai Xue, Chen Yilong, Yang Wanwen, Wang Jvxiao, Zhang Jian, Song Chengli

机构信息

Shanghai Institute for Minimally Invasive Therapy, School of Health Science and Engineering, University of Shanghai for Science and Technology, 20093, China.

Shanghai Institute for Minimally Invasive Therapy, School of Health Science and Engineering, University of Shanghai for Science and Technology, 20093, China.

出版信息

J Mech Behav Biomed Mater. 2025 Jan;161:106790. doi: 10.1016/j.jmbbm.2024.106790. Epub 2024 Oct 31.

Abstract

Magnesium (Mg) alloy which benefits from biodegradability and mechanical characteristics offers great potential for the development of degradable hemostatic clips. However, the deformation process induces stress concentration, which in turn accelerates the corrosion rate of Mg hemostatic clips. In this study, two types of R-shape clips based on Mg-Nd-Zn-Zr alloy were designed with structural features of no teeth and staggered teeth and simulated using finite element analysis (FEA), and the corrosion behaviors of the Mg clips were investigated by immersion test and electrochemical measurement. Furthermore, the clamping properties of the Mg clips were evaluated by burst pressure test. The simulation results showed that the R-shape clip with staggered teeth caused the minimum stress (1.237 MPa) to blood vessels. After the clamping deformation process, the closed clips remained intact without any signs of cracking. In vitro degradation analysis indicated that the corrosion rate of the closed clip was slightly faster than that of the open clip, and the Mg clip maintained its efficacy in achieving vascular closure even after a 4-week period of immersion, indicating a commendable performance in secure ligation closure. In addition, the burst pressure test results showed that the staggered teeth clip exhibited a higher burst pressure (88.73 ± 2.58 kPa) with less mechanical damage occurring to the ligated vessels compared with the toothless clip, meeting the requirements for clinical application. Therefore, the newly developed R-shape Mg alloy clip, featuring staggered teeth, has demonstrated excellent mechanical stability and shows great promise in the application of biodegradable tissue clips.

摘要

镁(Mg)合金具有生物可降解性和机械性能,为可降解止血夹的开发提供了巨大潜力。然而,变形过程会引起应力集中,进而加速镁止血夹的腐蚀速率。在本研究中,设计了两种基于Mg-Nd-Zn-Zr合金的R形夹,分别有无齿和交错齿的结构特征,并使用有限元分析(FEA)进行模拟,通过浸泡试验和电化学测量研究了镁夹的腐蚀行为。此外,通过爆破压力试验评估了镁夹的夹紧性能。模拟结果表明,交错齿的R形夹对血管产生的应力最小(1.237MPa)。在夹紧变形过程后,闭合的夹子保持完好,没有任何开裂迹象。体外降解分析表明,闭合夹子的腐蚀速率略快于开放夹子,并且即使在浸泡4周后,镁夹仍能保持其实现血管闭合的功效,表明在牢固结扎闭合方面具有值得称赞的性能。此外,爆破压力试验结果表明,与无齿夹相比,交错齿夹表现出更高的爆破压力(88.73±2.58kPa),对结扎血管造成的机械损伤更小,满足临床应用要求。因此,新开发的具有交错齿的R形镁合金夹已证明具有出色的机械稳定性,并在可生物降解组织夹的应用中显示出巨大潜力。

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