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A novel synthesis of new antibacterial nanostructures based on Zn-MOF compound: design characterization and a high performance application

机译:基于Zn-MOF化合物的新型抗菌纳米结构的新颖合成:设计表征和高性能应用

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摘要

In this study, the novel zinc metal-organic frameworks (MOF) nanostructure has been employed, which was developed using an affordable, environmental friendly, efficient and fast method of ultrasound-assisted reverse micelle (UARM). These nanostructures were identified with various techniques such as FT-IR, XRD, BET, SEM, TG-DSC, TEM and EDS. It was found that the Zn-MOF samples have favorable physicochemical properties. The impact of experimental parameters of the UARM method is effective on the resulting properties, such as high surface area of the products that increases the interactions between the Zn-MOF nanostructure and bacteria.Their antibacterial activities were investigated using diffusion methods in agar and also with dilutions of Zn-MOF samples. Antibiotics (tetracycline and ampicillin) and their anti-biofilm effects were evaluated using microplate method. Obtained results revealed that the Zn-MOF nanostructures have high antibacterial properties which, could be due to the nature of the applied Zn-MOF as well as the optimization process. The Zn- MOF nanostructures could be a novel antibacterial material as biocatalyst processes.
机译:在这项研究中,采用了新颖的锌金属有机骨架(MOF)纳米结构,该结构是使用可负担,环保,高效且快速的超声辅助反胶束(UARM)方法开发的。这些纳米结构是通过多种技术鉴定的,例如FT-IR,XRD,BET,SEM,TG-DSC,TEM和EDS。发现Zn-MOF样品具有良好的理化性质。 UARM方法的实验参数的影响对所得特性有效,例如产品的高表面积增加了Zn-MOF纳米结构与细菌之间的相互作用。使用琼脂和Zn-MOF样品的稀释液。使用微孔板法评估了抗生素(四环素和氨苄青霉素)及其抗生物膜作用。所得结果表明,Zn-MOF纳米结构具有很高的抗菌性能,这可能是由于所应用的Zn-MOF的性质以及优化工艺所致。 Zn-MOF纳米结构可以作为一种新型的抗菌材料作为生物催化剂工艺。

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