Literature DB >> 34964351

Zn-Mg-WC Nanocomposites for Bioresorbable Cardiovascular Stents: Microstructure, Mechanical Properties, Fatigue, Shelf Life, and Corrosion.

Zeyi Guan1, Chase S Linsley2, Shuaihang Pan1, Gongcheng Yao3, Benjamin M Wu2,3,4,5, Daniel S Levi6,7, Xiaochun Li1,3.   

Abstract

Zinc (Zn) and Zn alloys have been studied as potential materials for bioresorbable stents (BRSs) in the last decade due to their favorable biodegradability and biocompatibility. However, most Zn alloys lack the necessary combination of strength, ductility, fatigue resistance, corrosion rate (CR), and thermal stability needed for such applications. In this study, nanoparticles made of tungsten carbide (WC) were successfully incorporated into Zn alloyed with 0.5 wt % magnesium (Mg) and evaluated for their suitability for BRS applications. Specifically, the resulting Zn-0.5Mg-WC nanocomposite's microstructure, mechanical properties, in vitro CR, and thermal stability were evaluated. The Zn-0.5Mg-WC nanocomposite had excellent mechanical strength [ultimate tensile strength (UTS) > 250 MPa], elongation to failure (>30%), and a suitable in vitro CR (∼0.02 mm/y) for this clinical application. Moreover, the Zn-0.5Mg-WC nanocomposite survived 10 million cycles of tensile loading (stress ratio, R = 0.053) when the maximum stress was 80% of the yield stress. Its ductility was also retained during a 90-day thermal stability study, indicating an excellent shelf life. Stent prototypes were fabricated using this composition and were successfully deployed during bench testing without fracture. These results show that the Zn-0.5Mg-WC nanocomposite is a promising material for BRS applications. In vivo studies are underway to validate both biocompatibility, stent function, and degradation.

Entities:  

Keywords:  Zn alloys; bioresorbable stent; mechanical property; metal matrix nanocomposite

Mesh:

Substances:

Year:  2021        PMID: 34964351      PMCID: PMC9310700          DOI: 10.1021/acsbiomaterials.1c01358

Source DB:  PubMed          Journal:  ACS Biomater Sci Eng        ISSN: 2373-9878


  38 in total

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Authors:  Zeyi Guan; Chase S Linsley; Injoo Hwang; Gongcheng Yao; Benjamin M Wu; Xiaochun Li
Journal:  Mater Lett       Date:  2019-12-28       Impact factor: 3.423

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Journal:  Acta Biomater       Date:  2019-07-23       Impact factor: 8.947

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  1 in total

1.  Experimental study on novel biodegradable Zn-Fe-Si alloys.

Authors:  Yuxin Zeng; Zeyi Guan; Chase S Linsley; Shuaihang Pan; Jingke Liu; Benjamin M Wu; Xiaochun Li
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2022-05-06       Impact factor: 3.405

  1 in total

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