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Fabrication of magnesium/zinc-metal organic framework on titanium implants to inhibit bacterial infection and promote bone regeneration

机译:钛/锌金属有机骨架的制备钛植入物抑制细菌感染,促进骨再生

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摘要

The residual bacteria in the second revision surgery caused by infection would further lead to the failure of the implantation. Pathogenic bacteria adhesion to an implant surface not only interfere the functions of bone-formation related cells, but also activate the host immune system, thus resulting in inflammation and osteogenesis inhibition. Thus, to fabricate multifunctional (antibacterial, anti-inflammation and pro-osteogenesis) titanium implants is essential to address this issue. In this work, hybrid magnesium/zinc-metal organic framework (Mg/Zn-MOF74) coating was constructed on alkali-heat treated titanium (AT) surface. The hybrid Mg/Zn-MOF74 coating displayed good stability and its stability was related to the content of Zn2+. The MOF74-modified samples were sensitive to bacterial acid microenvironment and displayed strong antibacterial ability against both Escherichia coli and Staphylococcus aureus due to the degradation of MOF74 coating, leading to alkaline microenvironment (about pH 8.0) and degradation products (2,5-dihydroxyterephthalic acid and Zn2+). The coating also showed good early anti-inflammatory property to native Ti substrates. In vivo results further verified that AT-Mg/Zn3 implants had high antibacterial and anti-inflammatory properties at early stage of implantation, and greatly improved new bone formation around implants both at non-infected and infected femur sites.
机译:由感染引起的第二次修订手术中的残留细菌将进一步导致植入失败。致病细菌对植入表面的粘附性不仅干扰骨形成相关细胞的功能,而且还激活宿主免疫系统,从而导致炎症和骨发生抑制。因此,为了制造多功能(抗细菌,抗炎和促骨发生)钛植入物是解决这个问题的必不可少的。在该工作中,在碱热处理的钛(AT)表面上构建杂种镁/锌 - 金属有机骨架(Mg / Zn-Mof74)涂层。杂交Mg / Zn-mof74涂层显示出良好的稳定性,其稳定性与Zn2 +的含量有关。 MOF74改性样品对细菌酸微环境敏感,并且由于MOF74涂层的降解,呈现出对大肠杆菌和金黄色葡萄球菌的强抗菌能力,导致碱性微环境(约pH8.0)和降解产物(2,5-二羟基苯二甲酸和Zn2 +)。涂层还向天然Ti底物呈现出良好的早期抗炎性能。体内结果进一步证实,在植入早期的植入阶段,Mg / Zn3植入物具有高抗菌和抗炎性质,并且在非感染和感染的股骨位点植入物周围大大提高了新的骨形成。

著录项

  • 来源
    《Biomaterials》 |2019年第2019期|共16页
  • 作者单位

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Univ Sch Life Sci Chongqing 400044 Peoples R China;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

    Chongqing Jiaotong Univ Sch Mat Sci &

    Engn Chongqing 400074 Peoples R China;

    Chongqing Univ Coll Bioengn Key Lab Biorheol Sci &

    Technol Minist Educ Chongqing 400044;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Titanium; Mg/Zn-MOF74; Antibacterial; Anti-inflammation; Osteogenesis;

    机译:钛;mg / zn-mof74;抗菌;抗炎;骨肉瘤;

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