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Nanoparticle-Enabled Zn-0.1Mg Alloy with Long-Term Stability, Refined Degradation, and Favorable Biocompatibility for Biodegradable Implant Devices

  • Jingke Liu
  • , Chase S. Linsley
  • , Yingchao Su
  • , Walaa Abd-Elaziem
  • , Shuaihang Pan
  • , Maximilian Sokoluk
  • , Adam Griebel
  • , Guancheng Chen
  • , Yuxin Zeng
  • , Narayanan Murali
  • , Sarah Bialo
  • , Andrew Jiang
  • , Benjamin M. Wu
  • , Donghui Zhu
  • , Xiaochun Li
  • University of California at Los Angeles
  • ZanoMed Inc
  • Stony Brook University
  • Zagazig University
  • University of Utah
  • Fort Wayne Metals Research Products LLC

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

Zinc-based alloys, specifically Zn-Mg, have garnered considerable attention as promising materials for biodegradable implants due to their favorable mechanical strength, appropriate corrosion rate, and biocompatibility. Nevertheless, the alloy’s lack of mechanical stability and integrity, resulting from ductility loss induced by age hardening at room temperature, hampers its practical bioapplication. In this study, ceramic nanoparticles have been successfully incorporated into the Zn-Mg alloy system, leading to a significant improvement in long-term stability as well as mechanical strength and ductility. In addition, this study represents the first investigation of Zn-based nanocomposites both in vitro and in vivo to comprehend the influence of nanoparticles on the degradation behavior and biocompatibility of the Zn system. The findings indicate that the incorporation of WC nanoparticles effectively refines and stabilizes the degradation behavior of Zn-Mg without negatively impacting the cytocompatibility of the alloy. The subcutaneous implantation and femoral implantation further prove the benefits of nanoparticle incorporation and found no negative effects. Collectively, Zn-Mg-WC nanocomposites yield great potential for implant usage.

Original languageEnglish
Pages (from-to)50125-50138
Number of pages14
JournalACS Applied Materials and Interfaces
Volume16
Issue number38
DOIs
StatePublished - Sep 25 2024

Keywords

  • biodegradable
  • implants
  • nanocomposite
  • zinc

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