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纳米层状材料和纳米杂化修饰对其潜在抗菌活性的影响。

Impact of Nanolayered Material and Nanohybrid Modifications on Their Potential Antibacterial Activity.

作者信息

Alali Hasna Abdullah, Saber Osama, Berekaa Mahmoud Mohamed, Osama Doaa, Ezzeldin Mohamed Farouk, Shaalan Nagih M, AlMulla Abdulaziz Abdulrahman

机构信息

Department of Physics, College of Science, King Faisal University, P.O. Box 400, Al-Ahsa 31982, Saudi Arabia.

Egyptian Petroleum Research Institute, Nasr City, P.O. Box 11727, Cairo 11765, Egypt.

出版信息

Nanomaterials (Basel). 2022 Aug 11;12(16):2749. doi: 10.3390/nano12162749.

Abstract

Due to an escalating increase in multiple antibiotic resistance among bacteria, novel nanomaterials with antimicrobial properties are being developed to prevent infectious diseases caused by bacteria that are common in wastewater and the environment. A series of nanolayered structures and nanohybrids were prepared and modified by several methods including an ultrasonic technique, intercalation reactions of fatty acids, and carbon nanotubes, in addition to creating new phases based on zinc and aluminum. The nanomaterials prepared were used against a group of microorganisms, including , , and . Experimental results revealed that a nanohybrid based on carbon nanotubes and fatty acids showed significant antimicrobial activity against , and can be implemented in wastewater treatment. Similar behavior was observed for a nanolayered structure which was prepared using ultrasonic waves. For the other microorganisms, a nanolayered structure combined with carbon nanotubes showed a significant and clear inhibitory effect on , and . It is concluded that the nanolayered structures and nanohybrids, which can be modified at low cost with high productivity, using simple operations and straightforward to use equipment, can be considered good candidates for preventing infectious disease and inhibiting the spread of bacteria, especially those that are commonly found in wastewater and the environment.

摘要

由于细菌中多重抗生素耐药性的不断增加,正在开发具有抗菌特性的新型纳米材料,以预防由废水中和环境中常见细菌引起的传染病。制备并通过多种方法对一系列纳米层状结构和纳米杂化物进行了改性,这些方法包括超声技术、脂肪酸的插层反应以及碳纳米管,此外还基于锌和铝创造了新相。所制备的纳米材料用于对抗一组微生物,包括 、 、 和 。实验结果表明,基于碳纳米管和脂肪酸的纳米杂化物对 显示出显著的抗菌活性,并且可用于废水处理。对于使用超声波制备的纳米层状结构也观察到了类似的行为。对于其他微生物,与碳纳米管结合的纳米层状结构对 、 和 显示出显著且明显的抑制作用。得出的结论是,纳米层状结构和纳米杂化物可以低成本、高生产率地进行改性,使用简单的操作和易于使用的设备,可被视为预防传染病和抑制细菌传播的良好候选材料,尤其是那些在废水和环境中常见的细菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/690e/9416148/455755bedbb9/nanomaterials-12-02749-g001.jpg

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