首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Antiplanktonic, antibiofilm, antiswarming motility and antiquorum sensing activities of green synthesized Ag–TiO2, TiO2–Ag, Ag–Cu and Cu–Agnanocomposites against multi-drug-resistant bacteriaand antiquorum sensing activities of greensynthesized Ag–TiO2, TiO2–Ag, Ag–Cu and Cu–Agnanocomposites against multi-drug-resistantbacteria
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Antiplanktonic, antibiofilm, antiswarming motility and antiquorum sensing activities of green synthesized Ag–TiO2, TiO2–Ag, Ag–Cu and Cu–Agnanocomposites against multi-drug-resistant bacteriaand antiquorum sensing activities of greensynthesized Ag–TiO2, TiO2–Ag, Ag–Cu and Cu–Agnanocomposites against multi-drug-resistantbacteria

机译:绿色合成的Ag–TiO2,TiO2–Ag,Ag–Cu和Cu–Agnano复合复合材料对多药耐药细菌的抗浮游,抗生物膜,抗群体运动和抗群体感应活性以及绿色合成的Ag–TiO2,TiO2–Ag,Ag–的抗群体感应活性Cu和Cu-Agnano复合可抵抗多重耐药细菌

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Fighting of current antibiotics against multidrug-resistant (MDR) bacteria has not been completely successful. In this study, the bio-synthesized Ag–TiO2, TiO2–Ag, Ag–Cu and Cu–Ag nanocomposites (NCs) were used against MDR bacteria including Escherichia coli ATCC 25922, Pseudomonas aeruginosa ATCC 27853 (gram negative) and Staphylococcus aureus ATCC 43300 (gram positive). Antiplanktonic, antibiofilm, antiswarming motility and antiquorum sensing activities of these four NCs were measured by assays of agar well diffusion, minimum inhibition/minimum bactericidal concentrations (MIC/MBC), biofilm formation, biofilm morphology and pyocyanin amounts. Agar well diffusion method illustrated higher inhibition zone diameter (IZD) of Ag-TiO2 NCs with 13?±?1, 16?±?1.73 and 21.66?±?1.52?mm against E. coli ATCC 25922, S. aureus ATCC 43300 and P. aeruginosa ATCC 27853 respectively. Swarming motility of P. aeruginosa at presence of NCs demonstrated lower density than control samples. Ordering of antibiofilm strength for these NCs was Ag–TiO2??TiO2–Ag??Cu–Ag??Ag–Cu. In addition, biofilm roughness and also pyocyanin synthesis as virulence factor related to quorum sensing mechanisms of P. aeruginosa ATCC 27853 was decreased under Ag–TiO2 NCs. In total, the present investigation illustrated eco-friendly and one-pot way to synthesize metal NCs with having significant antibacterial, antibiofilm and antiquorum sensing abilities.
机译:目前针对多种耐药性(MDR)细菌的抗生素的抗药性尚未完全成功。在这项研究中,生物合成的Ag-TiO2,TiO2-Ag,Ag-Cu和Cu-Ag纳米复合物(NCs)用于抗MDR细菌,包括大肠杆菌ATCC 25922,铜绿假单胞菌ATCC 27853(革兰氏阴性)和金黄色葡萄球菌ATCC 43300(革兰氏阳性)。通过琼脂孔扩散,最小抑制/最小杀菌浓度(MIC / MBC),生物膜形成,生物膜形态和绿脓素含量的测定,测量了这四个NC的抗浮游,抗生物膜,抗群体运动和抗群体感应活性。琼脂井扩散法表明,具有13?±?1、16?±?1.73和21.66?±?1.52?mm的Ag-TiO2 NCs对大肠杆菌ATCC 25922,金黄色葡萄球菌ATCC 43300和更高的抑制区直径(IZD)更高。铜绿假单胞菌ATCC 27853。存在NCs时,铜绿假单胞菌的成群运动能力比对照样品低。这些NCs的抗生物膜强度的顺序为Ag-TiO2?>?TiO2-Ag?>?Cu-Ag?>?Ag-Cu。此外,在Ag-TiO2 NCs下,与铜绿假单胞菌ATCC 27853的群体感应机制相关的生物膜粗糙度以及绿脓素合成作为致病因子也降低了。总的来说,本研究说明了具有重要的抗菌,抗生物膜和抗群体感应能力的合成金属NC的环保和一锅法。

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