Sr-BDC∞ 金属有机框架 (MOF) 的抗菌和化学特性

A. Vodyashkin, P. Kezimana, J. A. А. Mbarga, M. Y. Putirskaya, Ya. M. Stanishevskiy
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摘要

简介。在这项工作中,通过简单的溶解热工艺获得了 Sr-BDC MOFs,无需使用高压。这种方法易于扩展,不需要任何特殊设备。本研究利用拉曼光谱对合成得到的晶体进行了研究。此外,还分析了所获材料对革兰氏阳性菌和革兰氏阴性菌的抗菌活性。在这项工作中,主要目的是比较评估用不同方法活化(和不活化)的 Sr-BDC MOFs 的抗菌特性。在这项工作中,我们使用对苯二甲酸、硝酸锶和二甲基甲酰胺进行溶解热处理。这种方法的特点是在合成过程中无需高压灭菌。表征时使用了光学显微镜和拉曼光谱。此外,为了研究抗菌特性,还进行了介质扩散试验。这些方法的结合将有助于确定活化方法与所得材料的生物活性之间的关系。本研究利用拉曼光谱对 Sr-BDC MOFs 的化学结构进行了研究。研究了活化方法对 MOFs 化学结构的影响。研究发现,拉曼光谱的特征峰可以用来确认晶体结构中溶剂(DMFA)的去除情况。此外,还对不同活化方法的 MOFs 进行了抗菌活性测试。结论。在研究过程中,我们发现了活化方法对 Sr-BDC MOFs 化学结构的影响。我们还发现活化方法会影响所获得 MOFs 的生物活性。研究还表明,不同类型的细菌具有不同的 MOFs 抗菌活性,这主要与微生物细胞壁的组成有关。
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Antibacterial and Chemical Properties of Sr-BDC∞ Metal-Organic Framework (MOF)
Introduction. In this work, Sr-BDC MOFs were obtained by a simple solvothermal process without the use of elevated pressure. This method is easily scalable and does not require any special equipment. In this work, the crystals obtained from the synthesis were studied by Raman spectroscopy. In addition, the obtained materials were analysed for antibacterial activity against Gram-positive and against Gram-negative bacteria.Aim. During this work, the main objective was to comparatively evaluate the antibacterial properties of Sr-BDC MOFs activated by different methods (and without activation).Materials and methods. In this work we used a solvothermal process using terephthalic acid, strontium nitrate and dimethylformamide. The peculiarity of this method is the absence of autoclaving in the synthesis process. Optical microscopy and Raman spectroscopy were used for characterization. Also, to study the antibacterial properties, a medium diffusion test was performed. The combination of these methods will help to establish the relationship between the method of activation and the biological activity of the resulting materials.Results and discussion. In this work, the chemical structure of Sr-BDC MOFs was studied by Raman spectroscopy. The influence of the activation method on the chemical structure of MOFs was studied. It was found that the characteristic peaks of Raman spectroscopy can be used to confirm the removal of solvent (DMFA) from the crystal structure. In addition, tests on the manifestation of antibacterial activity were carried out for MOFs with different activation method. The MIC and MBC were established for each sample.Conclusion. In the course of the work the effect of the activation method on the chemical structure of Sr-BDC MOFs was shown. We also found that the activation method could affect the biological activity of the obtained MOFs. It was also demonstrated that MOFs exhibit different antibacterial activities depending on the type of bacteria, which can be primarily related to the composition of the cell wall of microorganisms.
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