Literature DB >> 27331417

Enhanced in Vitro and in Vivo Performance of Mg-Zn-Y-Nd Alloy Achieved with APTES Pretreatment for Drug-Eluting Vascular Stent Application.

Jing Liu1, Bo Zheng2, Pei Wang1, Xingang Wang2, Bin Zhang2, Qiuping Shi2, Tingfei Xi1,3, Ming Chen2, Shaokang Guan4.   

Abstract

Bioabsorbable magnesium alloys are becoming prominent as temporary functional implants, as they avoid the risks generated by permanent metallic implants such as persistent inflammation and late restenosis. Nevertheless, the overfast corrosion of Mg alloys under physiological conditions hinders their wider application as medical implant materials. Here we investigate a simple one-step process to introduce a cross-linked 3-amino-propyltrimethoxysilane (APTES) silane physical barrier layer on the surface of Mg-Zn-Y-Nd alloys prior to electrostatic spraying with rapamycin-eluting poly(lactic-co-glycolic acid) (PLGA) layer. Surface microstructure was characterized by scanning electron microscope and Fourier transform infrared spectroscopy. Nanoscratch test verified the superior adhesion strength of PLGA coating in the group pretreated with APTES. Electrochemical tests combined with long-term immersion results suggested that the preferable in vitro anticorrosion behavior could be achieved by dense APTES barrier. Cell morphology and proliferation data demonstrated that APTES pretreated group resulted in remarkably preferable compatibility for both human umbilical vein endothelial cells and vascular smooth muscle cells. On the basis of excellent in vitro mechenical property, the animal study on the APTES pretreated Mg-Zn-Y-Nd stent implanted into porcine coronary arteries confirmed benign tissue compatibility as well as re-endothelialization without thrombogenesis or in-stent restenosis at six-month followup.

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Keywords:  Mg−Zn−Y−Nd alloy; biocompatibility; coronary artery stent; in vitro degradation; surface modification

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Year:  2016        PMID: 27331417     DOI: 10.1021/acsami.6b05038

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  In vivo and in vitro evaluation of a biodegradable magnesium vascular stent designed by shape optimization strategy.

Authors:  Chenxin Chen; Jiahui Chen; Wei Wu; Yongjuan Shi; Liang Jin; Lorenza Petrini; Li Shen; Guangyin Yuan; Wenjiang Ding; Junbo Ge; Elazer R Edelman; Francesco Migliavacca
Journal:  Biomaterials       Date:  2019-08-05       Impact factor: 12.479

2.  PDLLA-Zn-nitrided Fe bioresorbable scaffold with 53-μm-thick metallic struts and tunable multistage biodegradation function.

Authors:  Danni Shen; Haiping Qi; Wenjiao Lin; Wanqian Zhang; Dong Bian; Xiaoli Shi; Li Qin; Gui Zhang; Wenchao Fu; Kefei Dou; Bo Xu; Zhenyuan Yin; Jiancun Rao; Mazeni Alwi; Shuhan Wang; Yufeng Zheng; Deyuan Zhang; Runlin Gao
Journal:  Sci Adv       Date:  2021-06-04       Impact factor: 14.136

  2 in total

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