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首页> 外文期刊>Materials >The Relationship between the Mechanism of Zinc Oxide Crystallization and Its Antimicrobial Properties for the Surface Modification of Surgical Meshes
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The Relationship between the Mechanism of Zinc Oxide Crystallization and Its Antimicrobial Properties for the Surface Modification of Surgical Meshes

机译:氧化锌结晶机理与抗微生物性能与外科网眼表面改性的关系

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Surgical meshes were modified with zinc oxide (ZnO) using a chemical bath deposition method (CBD) at 50 °C, 70 °C, or 90 °C, in order to biologically activate them. Scanning electron microscopy (SEM), mass changes, and X-ray diffraction measurements revealed that at low temperatures Zn(OH) 2 was formed, and that this was converted into ZnO with a temperature increase. The antimicrobial activity without light stimulation of the ZnO modified Mersilene? meshes was related to the species of microorganism, the incubation time, and the conditions of the experiment. Generally, cocci ( S. aureus , S. epidermidis ) and yeast ( C. albicans ) were more sensitive than Gram-negative rods ( E. coli ). The differences in sensitivity of the studied microorganisms to ZnO were discussed. The most active sample was that obtained at 90 °C. The mechanism of antimicrobial action of ZnO was determined by various techniques, such as zeta potential analysis, electron paramagnetic resonance (EPR) spectroscopy, SEM studies, and measurements of Zn(II) and reactive oxygen species (ROS) concentration. Our results confirmed that the generation of free radicals was crucial, which occurs on the surface of crystalline ZnO.
机译:使用化学浴沉积法(CBD)在50℃,70℃或90℃下用氧化锌(ZnO)改性外科网格,以便生物学激活它们。扫描电子显微镜(SEM),质量变化和X射线衍射测量表明,在低温下形成Zn(OH)2,并将其转化为ZnO,温度升高。没有光刺激ZnO改性的甲硅烷的抗微生物活性?网格与微生物,孵化时间和实验条件有关。通常,Cocci(金黄色葡萄球菌,S.表皮)和酵母(白醛族人)比革兰氏阴性棒(大肠杆菌)更敏感。讨论了研究的微生物对ZnO的敏感性的差异。最活跃的样品在90℃下获得。 ZnO的抗微生物作用机理通过各种技术确定,例如Zeta电位分析,电子顺磁共振(EPR)光谱,SEM研究和Zn(II)的测量和反应性氧(ROS)浓度。我们的结果证实,自由基的产生至关重要,这发生在结晶ZnO的表面上。

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