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Magnesium Based Materials and their Antimicrobial Activity.

机译:镁基材料及其抗菌活性。

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摘要

The overall goals of this body of work were to characterize the antimicrobial properties of magnesium (Mg) metal and nano-magnesium oxide (nMgO) in vitro, to evaluate the in vitro cytotoxicity of Mg metal, and to incorporate MgO nanoparticles into a polymeric implant coating and evaluate its in vitro antimicrobial properties.;In the course of this work it was found that Mg metal, Mg-mesh, and nMgO have in vitro antimicrobial properties that are similar to a bactericidal antibiotic. For Mg metal, the mechanism of this activity appears to be related to an increase in pH (i.e. a more alkaline environment) and not an increase in Mg2+. Given that Mg-mesh is a Mg metal powder, the assumption is that it has the same mechanism of activity as Mg metal. The mechanism of activity for nMgO remains to be elucidated and may be related to a combination of interaction of the nanoparticles with the bacteria and the alkaline pH. It was further demonstrated that supernatants from suspensions of Mg-mesh and nMgO had the same antimicrobial effect as was noted when the particles were used. The supernatant from Mg-mesh and nMgO was also noted to prevent biofilm formation for two Staphylococcus strains. Finally, poly-epsilon-caprolactone (PCL) composites of Mg-mesh (PCL+Mg-mesh) and nMgO (PCL+nMgO) were produced. Coatings applied to screws inhibited growth of Escherichia coli and Pseudomonas aeruginosa and in thin disc format inhibited the growth of Staphylococcus aureus in addition to the E. coli and P. aeruginosa. Pure Mg metal was noted to have some cytotoxic effect on murine fibroblast and osteoblast cell lines, although this effect needs to be characterized further. To address the need for an in vivo model for evaluating implant associated infections, a new closed fracture osteomyelitis model in the femur of the rat was developed.;Magnesium, a readily available and inexpensive metal was shown to have antimicrobial properties that appear to be related to its corrosion products and that nMgO has similar effects. Incorporation of nMgO into a PCL composite was easily achieved and revealed similar, although not identical antimicrobial results. This work has provided a strong foundation and methodology for further evaluation of Mg based materials and their antimicrobial properties.
机译:这项工作的总体目标是在体外表征镁(Mg)金属和纳米氧化镁(nMgO)的抗菌特性,评估Mg金属的体外细胞毒性,并将MgO纳米颗粒掺入聚合物植入物中在进行这项工作的过程中,我们发现Mg金属,Mg-mesh和nMgO具有与杀菌抗生素相似的体外抗菌特性。对于镁金属而言,这种活性的机制似乎与pH值的升高(即更碱性的环境)有关,而与Mg2 +的增加无关。假定Mg-Mesh是Mg金属粉末,则假定其具有与Mg金属相同的活性机理。 nMgO的活性机理尚待阐明,可能与纳米颗粒与细菌的相互作用和碱性pH的结合有关。进一步证明,Mg-mesh和nMgO悬浮液的上清液具有与使用颗粒时相同的抗菌作用。还注意到来自Mg-mesh和nMgO的上清液可防止两种葡萄球菌菌株形成生物膜。最后,制备了Mg-网(PCL + Mg-网)和nMgO(PCL + nMgO)的聚-ε-己内酯(PCL)复合材料。除大肠杆菌和铜绿假单胞菌外,涂在螺钉上的涂层还抑制了大肠杆菌和铜绿假单胞菌的生长,并且以薄盘形式抑制了金黄色葡萄球菌的生长。注意到纯Mg金属对鼠成纤维细胞和成骨细胞具有一定的细胞毒性作用,尽管这种作用需要进一步表征。为了满足评估植入物相关感染的体内模型的需求,开发了一种新的大鼠股骨闭合性闭合性骨髓炎模型。镁是一种易于获得且便宜的金属,具有抗微生物特性,似乎具有相关性它的腐蚀产物和nMgO具有相似的作用。可以很容易地将nMgO掺入PCL复合材料中,并显示出相似的抗菌效果,尽管结果不尽相同。这项工作为进一步评估镁基材料及其抗菌性能提供了坚实的基础和方法。

著录项

  • 作者

    Robinson, Duane Allan.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Biology Microbiology.;Engineering Materials Science.;Health Sciences Surgery.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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