Abu Elella Mahmoud H, Goda Emad S, Abdallah Heba M, Abdel-Aziz Marwa M, Gamal Heba
Chemistry Department, Faculty of Science, Cairo University, Giza 12613, Egypt.
Organic Nanomaterials Lab, Department of Chemistry, Hannam University, Daejeon 34054, Republic of Korea; Gas Analysis and Fire Safety Laboratory, Chemistry Division, National Institute for Standards, 136, Giza 12211, Egypt.
Carbohydr Polym. 2023 Mar 1;303:120443. doi: 10.1016/j.carbpol.2022.120443. Epub 2022 Dec 10.
Our current work intends to primarily engineer a new type of antibacterial composite by preparing a highly biocompatible graphene sheet decorated with TMC-CMS IPNs nanoparticles utilizing one-pot, green, cost-effective ultrasonication approach. The microstructure of as-formed materials was chemically confirmed using various analytical techniques such as H-NMR, FTIR, UV/vis, SEM, and TEM. TEM data has proved the formation of uniformly distributed TCNPs on graphene surfaces with a small particle size of 22 nm compared with that of pure nanoparticles (30 nm). The inhibitory activity of these developed materials was examined against the growth of three different M. tuberculosis pathogens and in a comparison with the isoniazid drug as a standard anti-tuberculosis drug. The TCNPs@GRP composite attained MIC values of 0.98, 3.9, and 7.81 μg/mL for inhibiting the growth of sensitive, MDR, and XDR M. tuberculosis pathogens compared to the bare TCNPs (7.81, 31.25, >125 μg/mL) and the isoniazid drug (0.24, 0, 0 μg/mL), respectively. This reveals a considerable synergism in the antituberculosis activity between TCNPs and graphene nanosheets. Cytotoxicity of the TCNPs@GRP was examined against normal lung cell lines (WI38) and was found to have cell viability of 100% with the concentration range of 0.98-7.81 μg/mL.
我们目前的工作主要旨在通过利用一锅法、绿色、经济高效的超声处理方法制备一种装饰有TMC-CMS IPNs纳米颗粒的高生物相容性石墨烯片,来设计一种新型抗菌复合材料。使用各种分析技术,如H-NMR、FTIR、UV/vis、SEM和TEM,对所形成材料的微观结构进行了化学确认。TEM数据证明,与纯纳米颗粒(约30nm)相比,在石墨烯表面形成了粒径约为22nm的均匀分布的TCNPs。研究了这些开发材料对三种不同结核分枝杆菌病原体生长的抑制活性,并与作为标准抗结核药物的异烟肼进行了比较。与裸露的TCNPs(7.81、31.25、>125μg/mL)和异烟肼药物(0.24、0、0μg/mL)相比,TCNPs@GRP复合材料对敏感、耐多药和广泛耐药结核分枝杆菌病原体生长的最低抑菌浓度(MIC)值分别为0.98、3.9和7.81μg/mL。这表明TCNPs与石墨烯纳米片在抗结核活性方面具有显著的协同作用。研究了TCNPs@GRP对正常肺细胞系(WI38)的细胞毒性,发现在0.98-7.81μg/mL的浓度范围内,细胞活力为100%。