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首页> 外文期刊>Journal of nanomaterials >Silver Nanoparticles Synthesized through Green Methods Using Escherichia coli Top 10 (Ec-Ts) Growth Culture Medium Exhibit Antimicrobial Properties against Nongrowing Bacterial Strains
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Silver Nanoparticles Synthesized through Green Methods Using Escherichia coli Top 10 (Ec-Ts) Growth Culture Medium Exhibit Antimicrobial Properties against Nongrowing Bacterial Strains

机译:使用大肠杆菌前10(EC-TS)生长培养基通过绿色方法合成的银纳米颗粒具有针对非研磨细菌菌株的抗微生物性质

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摘要

Finding novel antibiotics and antimicrobial materials has become of great importance to modern society due to the alarming increase in the development of multidrug resistance in various bacterial strains. This problem is even more complex when infections involve bacterial strains in stationary metabolic states, since most of the antibiotics found in the market do not have an effect on bacteria in dormant metabolic states. A promising field to aid in the solution of this problem is nanotechnology, since it offers a wide avenue for the development of potential therapeutics, specifically the use of silver metal nanoparticles. Silver nanoparticles have proven to be highly effective antimicrobial agents and excellent candidates to be engineered and designed into clever delivery systems, taking advantage of their rapid and potent toxicity on prokaryotic cells at low concentrations. Metal nanoparticles are most commonly synthetized through one or a series of redox chemical reactions using powerful but environmentally toxic-reducing agents. Therefore, in this work, we propose a biosynthesis method that allows the production of nanoparticles, with homogenous shapes and narrow size distributions, through an environmentally friendly technique that does not produce toxic residues. Here, silver nanoparticles were produced from silver salt (AgNO_3) using three different growth culture media residues from E. coli top 10. The three different culture media residues used included LB, LBN, and LBE; all of them displaying a different chemical and nutrient composition. Here, after characterization of the different silver nanoparticles produced with the different media, we demonstrated that the LB culture-conditioned media was the most suitable to produce them since they displayed the most narrow size distribution, with an average 10.6nm in diameter, a relatively low standard deviation of 5.5 nm, and a narrow UV-vis spectrum absorption peak at 420 nm. The other methods presented larger n
机译:由于各种细菌菌株的多药耐药性的显而易见,寻找新颖的抗生素和抗菌材料对现代社会具有重要意义。当感染涉及固定代谢态中的细菌菌株时,这种问题更复杂,因为市场上发现的大多数抗生素没有对休眠代谢状态的细菌产生影响。有希望的领域帮助解决这个问题是纳米技术,因为它为潜在治疗剂的发展提供了广泛的途径,特别是使用银金属纳米颗粒。已经证明,银纳米粒子已被证明是高效的抗微生物剂和优异的候选者,用于设计成巧妙的递送系统,利用它们在低浓度下对原核细胞的快速和有效的毒性。金属纳米颗粒最常通过一种或一系列氧化还原化学反应使用强大但环保的还原剂而合成。因此,在这项工作中,我们提出了一种生物合成方法,其通过不产生毒性残留物的环保技术,允许生产具有均匀形状和窄尺寸分布的纳米颗粒。在此,使用来自大肠杆菌前10个不同的生长培养基残基的银盐(AgNO_3)制备银纳米粒子。使用的三种不同的培养基残基包括LB,LBN和LBE;所有这些都显示出不同的化学和营养成分。在这里,在用不同培养基制备的不同银纳米粒子的表征后,我们证明了LB培养条件介质是最适合生产的,因为它们显示出最窄的尺寸分布,平均直径为10.6nm,相对低标准偏差为5.5nm,420nm处具有窄的UV-Vis光谱吸收峰。其他方法呈现较大的n

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  • 来源
    《Journal of nanomaterials》 |2019年第1期|共8页
  • 作者单位

    Universidad Autónoma de Nuevo León (UANL) Facultad de Ciencias Químicas Av. Universidad s/n Cd. Universitaria 66455 San Nicolás de los Garza NL Mexico;

    Universidad Autónoma de Nuevo León (UANL) Facultad de Ciencias Químicas Av. Universidad s/n Cd. Universitaria 66455 San Nicolás de los Garza NL Mexico;

    Universidad Autónoma de Nuevo León (UANL) Facultad de Ciencias Biológicas Av. Universidad s/n Cd. Universitaria 66455 San Nicolás de los Garza NL Mexico;

    Universidad Autónoma de Nuevo León (UANL) Facultad de Ciencias Químicas Av. Universidad s/n Cd. Universitaria 66455 San Nicolás de los Garza NL Mexico;

    Universidad Autónoma de Nuevo León (UANL) Facultad de Ciencias Químicas Av. Universidad s/n Cd. Universitaria 66455 San Nicolás de los Garza NL Mexico;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    Silver; Nanoparticles; Synthesized;

    机译:银;纳米粒子;合成;

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