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Ag(Ⅰ)对大肠杆菌抑制作用影响因素的分析

Influencing factor analysis of Escherichia coli inhibition by Ag(Ⅰ)
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摘要 通过测定在各种条件下Ag(Ⅰ)对大肠杆菌Escherichia coli的生长的抑制作用,系统分析了各参数对Ag(Ⅰ)毒性的影响。结果表明:好氧、厌氧状态下,Ag(Ⅰ)对E.coli的抑制能力基本相同;在LB培养基、氨基酸基本培养基和标准基本培养基中Ag(Ⅰ)开始抑制E.coli生长的浓度差异较大,分别为10、0.5、0.1μmol/L;LB组分中的酵母粉的加入完全消除了Ag(I)对E.coli的抑制作用;此外,菌体浓度越高抑制其生长所需的Ag(Ⅰ)浓度也越高。因此Ag(I)对E.coli生长的抑制作用与氧化应激无关,而与培养基种类、培养基组分及菌体浓度高度相关。 Ag(Ⅰ) inhibition against Escherichia coli(E.coli) was observed under different conditions,based on which the influencing factors of Ag(Ⅰ) toxicity were analyzed systematically.Toxicity of Ag(Ⅰ) against E.coli was investigated in LB,case-amino acid minimum medium(CAA) and standard minimum medium(MM) both aerobically and anaerobically with different Ag(Ⅰ) concentrations.The influence of branched amino acid and cell concentration to the silver inhibition were also discussed.Results indicated that E.coli was similarly inhibited by Ag(Ⅰ) both aerobically and anaerobically.Inhibition showed high medium dependent,10,0.5,0.1 μmol/L Ag(Ⅰ) were required to initiate toxicity in LB,CAA and MM medium respectively.Sensitivity was completely suppressed in LB medium due to yeast chelation of Ag(Ⅰ).Furthermore,higher cell density required higher Ag(Ⅰ) concentration to be toxic.Hence,toxicity of Ag(Ⅰ) against E.coli didn’t involve reactive oxygen species,but depended on medium,medium components and cell concentration.
出处 《生态环境学报》 CSCD 北大核心 2012年第4期750-753,共4页 Ecology and Environmental Sciences
基金 国家自然科学基金项目(21007010) 教育部博士点基金项目(20090075120007) 上海科委项目(09230500200)
关键词 AG(I) 大肠杆菌 金属毒性 Ag(Ⅰ) Escherichia coli metal toxicity
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参考文献19

  • 1XIU Zongming, MA Jie, Alvarez P J J. Differential effect of common ligands and molecular oxygen on antimicrobial activity of silver nanoparticles versus silver ions[J]. Environmental Science & Technology, 2011, 45(20): 9003-9008.
  • 2谢小保,李文茹,曾海燕,欧阳友生,陈仪本.纳米银对大肠杆菌的抗菌作用及其机制[J].材料工程,2008,36(10):106-109. 被引量:61
  • 3JOHNSTON H J, HUTCHISON G, CHRISTENSEN F M, et al. A review of the in vivo and in vitro loxieity of silver and gold particulates: particle attributes and biological mechanisms responsible for the observed toxicity[J]. Critica Reviews in Toxicologv. 2010. 40(4): 328-46.
  • 4MEI N, ZHANG Y, CHEN Y, et al. Silver nanoparticle-induced mutations and oxidative stress in mouse lymphoma cells[J]. Environmental and Molecular Mutagenesis, 2012.
  • 5ASARE N, INSTANES C, SANDBERG W J, et al. Cytotoxic and genotoxic effects of silver nanoparticles in testicular cells[J]. Toxicology, 2012, 291(1-3): 65-72.
  • 6ARNAOUT C L, GUNSCH C K. Impacts of silver nanoparticle coating on the nitrification potential of nitrosomonas europaea[J]. Environmental Science & Technology, 2012.
  • 7RAI M, YADAV A, GADE A. Silver nanoparticles as a new generation of antimicrobials[J]. Biotechnology Advances, 2009, 27(1): 76-83.
  • 8BEATTIE M, TAYLOR J. Silver alloy vs. uncoated urinary catheters: a systemic review of the literature[J]. Journal of Clinical Nursing, 2011, 20: 2098-2108.
  • 9BAE E, PARK HJ, LEE J, et al. Bacterial cytotoxicity of the silver nanoparticle related to physicochemical metrics and agglomeration properties[J]. Environmental Toxicology and Chemistry, 2010, 29(10): 2154-2160.
  • 10FABREGA J, FAWCETT S R, RENSHAW J C, et al. Silver nanoparticle impact on bacterial growth: effect of pH, concentration, and organic matter[J]. Environmental Science & Technology, 2009, 43(19): 7285-7290.

二级参考文献12

  • 1BERGER TJ, SPADARO JA, CHAPIN SE, et al. Electrically generated silver ions: quantitative effects on bacterial and mammalian cells[J]. Anti Microb Agents, 1976, 9(2):357--358.
  • 2ZHAO GJ, STEVENS SE. Multiple parameters for comprehensive evaluation of the susceptibility of Escherichia coll to the silver ion[J]. Bio Metals, 1998, 11:27--32.
  • 3SAMBROOK J, FRITSCH EF, MANISTIS T. Molecular cloning: a laboratory manual [M]. 3rd ed, New York: Cold Spring Harbor Laboratory Press, 2001.
  • 4SONDI I, SALOPEKAI-SONDI B. Silver nanoparticles as antimicrobial agent: a case study on E. coli as a model for Gram-negative bacteria[J]. Journal of Colloid and Interface Science, 2004, 275:177--182.
  • 5HAMOUDA T, BAKER JR. Antimicrobial mechanism of action of surfactant lipid preparations in enteric gram-negative bacilli[J]. Journal of Applied Microbiology, 2000, 89 : 397-- 403.
  • 6STOIMENOV PK, KLINGER RL, MARCHIN GL, et al. Metal oxide nanoparticles as bactericidal agents[J]. Langmuir, 2002, 18:6679--6686.
  • 7FENG QL, WU J, CHEN GQ, et al. A mechanistic study of the antibacterial effect of silver ions on Escherichia coli and Staphylococcusaureus[J]. J Biomed Mater Res, 2000, 52:662--668.
  • 8AMRO NA, KOTRA LP, High-resolution atomic force WADU-MESTHRIGE K, et al. microscopy studies of the escherichia eoli outer membrane: structural basis for permeability [J]. Langmuir, 2000, 16:2789--2796.
  • 9刘康时,江显异,赵英.银系无机抗菌剂作用机理的研究进展[J].佛山陶瓷,2001,11(11):1-5. 被引量:37
  • 10林爱红,秦彦珉,饶健,黄惠英.纳米抗菌剂抑菌杀菌性能研究[J].实用预防医学,2003,10(2):168-170. 被引量:45

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