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Lysozyme catalyzes the formation of antimicrobial silver nanoparticles

机译:溶菌酶催化抗菌银纳米颗粒的形成

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Hen egg white lysozyme acted as the sole reducing agent and catalyzed the formation of silver nanoparticles in the presence of light. Stable silver colloids formed after mixing lysozyme and silver acetate in methanol and the resulting nanoparticles were concentrated and transferred to aqueous solution without any significant changes in physical properties. Activity and antimicrobial assays demonstrated lysozyme-silver nanoparticles retained the hydrolase function of the enzyme and were effective in inhibiting growth of Escherichia coli, Staphylococcus aureus, Bacillus anthracis, and Candida albicans. Remarkably, lysozyme-silver nanoparticles demonstrated a strong antimicrobial effect against silver-resistant Proteus mirabilis strains and a recombinant E. coli strain containing the multiple antibiotic- and silver-resistant plasmid, pMG101. Results of toxicological studies using human epidermal keratinocytes revealed that lysozyme-silver nanoparticles are nontoxic at concentrations sufficient to inhibit microbial growth. Overall, the ability of lysozyme to assemble silver nanoparticles in a one-step reaction offers a simple and environmentally friendly approach to form stable colloids of nontoxic silver nanoparticles that combine the antimicrobial properties of lysozyme and silver. The results expand the functionality of nanomaterials for biological systems and represent a novel antimicrobial composite for potential aseptics and therapeutic use in the future.
机译:鸡蛋清溶菌酶是唯一的还原剂,在有光的情况下催化银纳米颗粒的形成。在甲醇中混合溶菌酶和乙酸银后,形成稳定的银胶体,将所得纳米颗粒浓缩并转移至水溶液中,物理性能无任何明显变化。活性和抗菌测定表明,溶菌酶-银纳米颗粒保留了该酶的水解酶功能,可有效抑制大肠杆菌,金黄色葡萄球菌,炭疽芽孢杆菌和白色念珠菌的生长。值得注意的是,溶菌酶-银纳米颗粒对银抗性变形杆菌和含有多种抗生素和银抗性质粒pMG101的重组大肠杆菌菌株表现出强大的抗菌作用。使用人表皮角质形成细胞的毒理学研究结果表明,溶菌酶银纳米颗粒在足以抑制微生物生长的浓度下无毒。总体而言,溶菌酶在一步反应中组装银纳米颗粒的能力提供了一种简单且环保的方法,可形成结合了溶菌酶和银的抗菌特性的无毒银纳米颗粒的稳定胶体。结果扩展了纳米材料在生物系统中的功能,并代表了一种新型的抗菌复合材料,可用于未来的无菌和治疗用途。

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