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新型单金属和双金属抗菌A型分子筛材料的合理设计与表征

Rational Design and Characterisation of Novel Mono- and Bimetallic Antibacterial Linde Type A Zeolite Materials.

作者信息

Oheix Emmanuel, Reicher Chloé, Nouali Habiba, Michelin Laure, Josien Ludovic, Daou T Jean, Pieuchot Laurent

机构信息

Institut de Science des Matériaux de Mulhouse (IS2M), Université de Haute Alsace (UHA), CNRS, UMR 7361, 3 bis rue Alfred Werner, F-68093 Mulhouse, France.

Université de Strasbourg (UniStra), F-67000 Strasbourg, France.

出版信息

J Funct Biomater. 2022 Jun 2;13(2):73. doi: 10.3390/jfb13020073.

Abstract

The development of antimicrobial devices and surfaces requires the setup of suitable materials, able to store and release active principles. In this context, zeolites, which are microporous aluminosilicate minerals, hold great promise, since they are able to serve as a reservoir for metal-ions with antimicrobial properties. Here, we report on the preparation of Linde Type A zeolites, partially exchanged with combinations of metal-ions (Ag, Cu, Zn) at different loadings (0.1-11.9 wt.%). We combine X-ray fluorescence, scanning electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray diffraction to monitor the metal-ion contents, distribution, and conservation of the zeolite structure after exchange. Then, we evaluate their antimicrobial activity, using agar dilution and optical-density monitoring of cultures. The results indicate that silver-loaded materials are at least 70-fold more active than the copper-, zinc-, and non-exchanged ones. Moreover, zeolites loaded with lower Ag concentrations remain active down to 0.1 wt.%, and their activities are directly proportional to the total Ag content. Sequential exchanges with two metal ions (Ag and either Cu, Zn) display synergetic or antagonist effects, depending on the quantity of the second metal. Altogether, this work shows that, by combining analytical and quantitative methods, it is possible to fine-tune the composition of bi-metal-exchanged zeolites, in order to maximise their antimicrobial potential, opening new ways for the development of next-generation composite zeolite-containing antimicrobial materials, with potential applications for the design of dental or bone implants, as well as biomedical devices and pharmaceutical products.

摘要

抗菌设备和表面的开发需要设置合适的材料,这些材料要能够储存和释放活性成分。在这种情况下,作为微孔铝硅酸盐矿物的沸石具有很大的潜力,因为它们能够作为具有抗菌特性的金属离子的储存库。在此,我们报告了不同负载量(0.1 - 11.9 wt.%)的金属离子(银、铜、锌)组合部分交换的A型沸石的制备。我们结合X射线荧光、扫描电子显微镜、能量色散X射线光谱和X射线衍射来监测交换后沸石结构中的金属离子含量、分布和结构保留情况。然后,我们使用琼脂稀释法和培养物的光密度监测来评估它们的抗菌活性。结果表明,负载银的材料的活性至少比负载铜、锌以及未交换的材料高70倍。此外,负载较低银浓度的沸石在低至0.1 wt.%时仍保持活性,并且它们的活性与总银含量成正比。用两种金属离子(银和铜或锌)进行顺序交换显示出协同或拮抗作用,这取决于第二种金属的量。总之,这项工作表明,通过结合分析和定量方法,可以微调双金属交换沸石的组成,以最大限度地发挥其抗菌潜力,为下一代含复合沸石的抗菌材料的开发开辟新途径,这些材料在牙科或骨植入物设计以及生物医学设备和药品设计方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2654/9224897/1bb914b1efda/jfb-13-00073-g001.jpg

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