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Investigation of the Antibacterial Effect of MesoporousMagnesium Carbonate

机译:中孔抗菌作用的研究碳酸镁

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摘要

Mesoporous magnesium carbonate (MMC) was first presented in 2013, and this material is currently under consideration for use in a number of biotechnological applications including topical formulations. This study presents the first evaluation of the antibacterial properties of the material with mesoporous silica and two other magnesium-containing powder materials used as references. All powder materials in this study are sieved to achieve a particle size distribution between 25 and 75 μm. The Gram-positive bacterium Staphylococcus epidermidis is used as the model bacterium due to its prevalence on human skin, its likelihood of developing resistance to antibiotics, for example, from routine exposure to antibiotics secreted in sweat, and because it is found inside affected acne vulgaris pores. Quantification of bacterial viability using a metabolic activity assay with resazurin as the fluorescent indicator shows that MMC exerts a strong antibacterial effect on the bacteria and that alkalinity accounts for the major part of this effect. The results open up forfurther development of MMC in on-skin applications where bacterialgrowth inhibition without using antibiotics is deemed favorable.
机译:介孔碳酸镁(MMC)于2013年首次推出,目前正在考虑将该材料用于包括局部制剂在内的许多生物技术应用。本研究以介孔二氧化硅和其他两种含镁粉末材料为参考,对该材料的抗菌性能进行了首次评估。筛分本研究中的所有粉末材料,以实现25至75μm的粒径分布。革兰氏阳性表皮葡萄球菌被用作模型细菌,是因为它在人的皮肤上盛行,对抗生素产生抗药性的可能性,例如,由于常规暴露于汗液中分泌的抗生素,以及在受感染的寻常痤疮中发现毛孔。使用以刃天青为荧光指示剂的代谢活性测定法对细菌生存力进行定量显示,MMC对细菌发挥了强大的抗菌作用,而碱度是这种作用的主要部分。结果为MMC在细菌性皮肤应用中的进一步发展不使用抗生素抑制生长被认为是有利的。

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