Loo Yuet Ying, Rukayadi Yaya, Nor-Khaizura Mahmud-Ab-Rashid, Kuan Chee Hao, Chieng Buong Woei, Nishibuchi Mitsuaki, Radu Son
Department of Food Science, Faculty of Food Science and Technology, Universiti Putra Malaysia, Selangor, Malaysia.
Department of Agricultural and Food Science, Faculty of Science, Universiti Tunku Abdul Rahman, Kampar, Malaysia.
Front Microbiol. 2018 Jul 16;9:1555. doi: 10.3389/fmicb.2018.01555. eCollection 2018.
Silver nanoparticles (AgNPs) used in this study were synthesized using pu-erh tea leaves extract with particle size of 4.06 nm. The antibacterial activity of green synthesized AgNPs against a diverse range of Gram-negative foodborne pathogens was determined using disk diffusion method, resazurin microtitre-plate assay (minimum inhibitory concentration, MIC), and minimum bactericidal concentration test (MBC). The MIC and MBC of AgNPs against , , Typhimurium, and Enteritidis were 7.8, 3.9, 3.9, 3.9 and 7.8, 3.9, 7.8, 3.9 μg/mL, respectively. Time-kill curves were used to evaluate the concentration between MIC and bactericidal activity of AgNPs at concentrations ranging from 0×MIC to 8×MIC. The killing activity of AgNPs was fast acting against all the Gram-negative bacteria tested; the reduction in the number of CFU mL was >3 Log units (99.9%) in 1-2 h. This study indicates that AgNPs exhibit a strong antimicrobial activity and thus might be developed as a new type of antimicrobial agents for the treatment of bacterial infection including multidrug resistant bacterial infection.
本研究中使用的银纳米颗粒(AgNPs)是利用普洱茶树叶提取物合成的,粒径为4.06纳米。采用纸片扩散法、刃天青微量滴定板测定法(最低抑菌浓度,MIC)和最低杀菌浓度试验(MBC),测定了绿色合成的AgNPs对多种革兰氏阴性食源性病原体的抗菌活性。AgNPs对肠炎沙门氏菌、鼠伤寒沙门氏菌和肠炎杆菌的MIC和MBC分别为7.8、3.9、3.9、3.9和7.8、3.9、7.8、3.9μg/mL。采用时间-杀菌曲线评估AgNPs在0×MIC至8×MIC浓度范围内的MIC与杀菌活性之间的浓度。AgNPs对所有测试的革兰氏阴性菌的杀伤活性起效迅速;在1-2小时内,每毫升菌落形成单位(CFU)数量减少>3个对数单位(99.9%)。本研究表明,AgNPs具有很强的抗菌活性,因此可能被开发为一种新型抗菌剂,用于治疗包括多重耐药细菌感染在内的细菌感染。