Kinetics of antibacterial activities of cellulose nanocrystals and their silver-zinc oxide nanocomposites: Application as potential disinfectants

F.O. Agunbiade, E.E. Allen, G.O. Oyetibo
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Abstract

Cellulose nanocrystals (CNCs) were produced from corncob and used as reducing agent in the formation of ZnO/CNCs, Ag/CNCs, and  ZnO-Ag/CNCs composites and applied as antibacterial agents for both grampositive and gram-negative bacteria and the kinetics of  microbial growth inhibition studied. The CNCs and composites were characterized by UV-visible and Fourier transform-infrared (FTIR)  spectroscopy. The characterization results revealed that the functional groups of CNCs were affected by their interactions with Ag+  and Zn2+ ions. The composites at 100 mg/mL displayed activities against Gram-positive bacteria - Bacillus subtilis, Staphylococcus aureus,  Staphylococcus epidermis, Bacillus coagulans and Enterococcus faecalis and Gram-negative bacteria - Escherichia coli, Klebsiella pneumonia,  Salmonella typhimurium, Pseudomonas aeruginosa, Enterococcus faecium and Acinetobacter baumanii) bacteria with inhibitory zones ranged  between 9-46 mm. The kinetics of inhibition showed that the composites treated water had 4 to 28 times lower rate constants compared  to the untreated water. This implied that the composites inhibit growth rates and have the potential of disinfecting for between 4 to 28 h  depending on the bacteria. The materials showed better growth inhibition rate on gram-positive bacteria than on gram-negative. These  composites may have potential applications as disinfectants in personal care products and serve as more eco-friendly alternative  disinfectants to chlorophenols. 
纤维素纳米晶体及其银氧化锌纳米复合材料的抗菌活性动力学:作为潜在消毒剂的应用
以玉米芯为原料制备了纤维素纳米晶体(CNCs),并将其作为还原剂用于形成 ZnO/CNCs、Ag/CNCs 和 ZnO-Ag/CNCs 复合材料,将其用作革兰氏阳性菌和革兰氏阴性菌的抗菌剂,并研究了抑制微生物生长的动力学。通过紫外可见光谱和傅立叶变换红外光谱对 CNCs 和复合材料进行了表征。表征结果表明,氯化萘的官能团受其与 Ag+ 和 Zn2+ 离子相互作用的影响。100 mg/mL 的复合材料对革兰氏阳性菌--枯草芽孢杆菌、金黄色葡萄球菌、表皮葡萄球菌、凝结芽孢杆菌和粪肠球菌,以及革兰氏阴性菌--大肠埃希菌、肺炎克雷伯菌、沙门氏菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌、痢疾杆菌等具有活性、肺炎克雷伯菌、伤寒沙门氏菌、铜绿假单胞菌、粪肠球菌和鲍曼不动杆菌)细菌,抑菌区在 9-46 毫米之间。抑菌动力学表明,与未经处理的水相比,经过复合材料处理的水的速率常数低 4 到 28 倍。这意味着复合材料可以抑制细菌的生长速度,并具有 4 至 28 小时的消毒潜力,具体取决于细菌的种类。与革兰氏阴性菌相比,这些材料对革兰氏阳性菌的生长抑制率更高。这些复合材料有可能用作个人护理产品的消毒剂,并可作为氯酚消毒剂的更环保的替代品。
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