Biocompatibility and corrosion resistance of drug coatings with different polymers for magnesium alloy cardiovascular stents

被引:1
|
作者
Liu, Kuei-Ping [1 ]
Cheng, An-Yu [2 ,3 ]
You, Jhu-Lin [2 ,3 ]
Chang, Yen-Hao [4 ]
Tseng, Chun Chieh [4 ]
Ger, Ming-Der [2 ,3 ]
机构
[1] Natl Def Univ, Chung Cheng Inst Technol, Grad Sch Def Sci, Taoyuan 335, Taiwan
[2] Natl Def Univ, Chung Cheng Inst Technol, Dept Chem & Mat Engn, Taoyuan 335, Taiwan
[3] Natl Chiao Tung Univ, Syst Engn & Technol Program, Hsinchu 300, Taiwan
[4] Met Ind Res & Dev Ctr, Med Devices R&D Serv Dept, Combinat Med Device Technol Div, Kaohsiung 802, Taiwan
关键词
WE43 magnesium alloy; Drug-eluting stents; Polymer coatings; Electropolishing; Corrosion resistance; IN-VITRO CORROSION; MG ALLOY; RELEASE; HEMOCOMPATIBILITY; MECHANISMS; BEHAVIOR; GROWTH; SAFETY; AZ31;
D O I
10.1016/j.colsurfb.2024.114202
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Recently, advances in enhancing corrosion properties through various techniques, and the clinical application of biodegradable cardiovascular stents made from magnesium (Mg) alloys face challenges to corrosion resistance, blood compatibility, and biocompatibility. Drug-eluting stents (DES) offer a solution to enhance the corrosion resistance of Mg alloys while simultaneously reducing the occurrence of restenosis. In this study, WE43 Mg alloy was pretreated using electropolishing technology, and different polymers (PEG and PLLA) were used as drug-polymer coatings for the Mg alloy. At the same time, PTX, an anticoagulant, was incorporated to achieve drug coating of different polymers on WE43 Mg alloy. The corrosion resistance of different polymer-drug coatings was assessed using a plasma solution. Furthermore, in vitro and in vivo tests were used to evaluate the blood biocompatibility of these coatings. The results indicated the PTX-PEG-coated WE43 Mg alloy exhibited the highest corrosion resistance and the most stable drug release profile among the tested coatings. Its hemolysis rate of 0.6 % was within the clinical requirements (<5 %). The incorporation of PEG prevents non-specific protein adsorption and nanoparticle aggregation, enhancing the surface hemocompatibility of WE43 Mg alloy. Therefore, the PTX-PEG coating shows promising potential for application in the development of drug-coated Mg alloy.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Phosphating process of AZ31 magnesium alloy and corrosion resistance of coatings
    程英亮
    吴海兰
    陈振华
    王慧敏
    李玲玲
    Transactions of Nonferrous Metals Society of China, 2006, (05) : 1086 - 1091
  • [42] Role of Surface Preparation in Corrosion Resistance Due to Silane Coatings on a Magnesium Alloy
    Saxena, Abhishek
    Raman, R. K. Singh
    MOLECULES, 2021, 26 (21):
  • [43] Enhanced Corrosion Resistance and Biocompatibility of Magnesium Alloy by Mg-Al-Layered Double Hydroxide
    Peng, Feng
    Li, Hua
    Wang, Donghui
    Tian, Peng
    Tian, Yaxin
    Yuan, Guangyin
    Xu, Demin
    Liu, Xuanyong
    ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (51) : 35033 - 35044
  • [44] Corrosion resistance and biocompatibility of carbon ion implanted AZ31B magnesium alloy
    Zheng, Chengdong
    Lin, Bingpeng
    Li, Tong
    Wang, Shuang
    Hou, Yuxia
    Zhang, Zhiyong
    Yang, Fan
    Cao, Baocheng
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [45] Corrosion resistance and biocompatibility of the KMgF3 coated AZ31 magnesium alloy
    Zhang, Y.
    Dai, J. Y.
    Zhao, L.
    Wu, L. P.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2023, 968
  • [46] Enhanced corrosion resistance and biocompatibility of biodegradable magnesium alloy modified by calcium phosphate/collagen coating
    Guo, Yunting
    Su, Yingchao
    Gu, Rui
    Zhang, Zhihui
    Li, Guangyu
    Lian, Jianshe
    Ren, Luquan
    SURFACE & COATINGS TECHNOLOGY, 2020, 401 (401):
  • [47] Enhanced corrosion resistance and biocompatibility of an elastic poly (butyleneadipate-co-terephthalate) composite coating for AZ31 magnesium alloy vascular stents
    Shi, Liqian
    Chen, Shanshan
    Shahzad, M. Babar
    Wei, Zhiyong
    Leng, Bing
    PROGRESS IN ORGANIC COATINGS, 2022, 172
  • [48] Corrosion protection of DLC coatings on magnesium alloy
    Choi, J.
    Nakao, S.
    Kim, J.
    Ikeyama, M.
    Kato, T.
    DIAMOND AND RELATED MATERIALS, 2007, 16 (4-7) : 1361 - 1364
  • [49] An asymmetric surface coating strategy for improved corrosion resistance and vascular compatibility of magnesium alloy stents
    Kang, Min-Ho
    Cheon, Kwang-Hee
    Jo, Kyung-Il
    Ahn, Ji-Ho
    Kim, Hyoun-Ee
    Jung, Hyun-Do
    Jang, Tae-Sik
    MATERIALS & DESIGN, 2020, 196
  • [50] Comparison of corrosion resistance of microarc oxidation coatings prepared with different electrolyte concentrations on AM60 magnesium alloy
    Cheng, Y. -L.
    Qin, T. -W.
    Li, L. -L.
    Wang, H. -M.
    Zhang, Z.
    CORROSION ENGINEERING SCIENCE AND TECHNOLOGY, 2011, 46 (01) : 17 - 23