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      SCOPUS KCI등재

      은나노 입자의 항균작용과 작용기작 = Antimicrobial Effects and Mechanism(s) of Silver Nanoparticle

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      https://www.riss.kr/link?id=A82564254

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      다국어 초록 (Multilingual Abstract)

      The antimicrobial effects of silver (Ag) ion or salts are well known. Recently, silver nanoparticle is attracting an interest in a wide ariety of fields since it has been known to be safe and effective as an antimicrobial agent against a broad spectrum of microorganisms. Although silver nanoparticle has been applied to various kinds of products owing to its potent antimicrobial activity, the effects of silver nanoparticle on microorganisms and antimicrobial mechanism have not been revealed clearly. In this paper, we summarized the characteristics, antimicrobial activities and mechanisms, cytotoxicity and applicability of silver nanoparticle.
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      The antimicrobial effects of silver (Ag) ion or salts are well known. Recently, silver nanoparticle is attracting an interest in a wide ariety of fields since it has been known to be safe and effective as an antimicrobial agent against a broad spectru...

      The antimicrobial effects of silver (Ag) ion or salts are well known. Recently, silver nanoparticle is attracting an interest in a wide ariety of fields since it has been known to be safe and effective as an antimicrobial agent against a broad spectrum of microorganisms. Although silver nanoparticle has been applied to various kinds of products owing to its potent antimicrobial activity, the effects of silver nanoparticle on microorganisms and antimicrobial mechanism have not been revealed clearly. In this paper, we summarized the characteristics, antimicrobial activities and mechanisms, cytotoxicity and applicability of silver nanoparticle.

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      참고문헌 (Reference)

      1 김지연, "은(Ag)의 미생물 불활성화 특성 및 기작" 한국공업화학회 20 (20): 251-257, 2009

      2 Butkus, M. A., "Use of aqueous silver to enhance inactivationof coliphage MS-2 by UV disinfection" 70 : 2848-2853, 2004

      3 Carlson, C., "Unique cellular interaction of silver nanoparticles: sizedependentgeneration of reactive oxygen species" 112 : 13608-13619, 2008

      4 Tian, J., "Topical delivery ofsilver nanoparticles promotes wound healing" 2 : 129-136, 2007

      5 Pedahzur, R., "Theinteraction of silver ions and hydrogen peroxide in theinactivation of E. coli: a preliminary evaluation of a newlong acting residual drinking water disinfectant" 31 : 123-129, 1995

      6 Morones, J. R., "Thebactericidal effect of silver nanoparticles" 16 : 2345-2353, 2005

      7 Yang, Q., "The formation of fractal Ag nanocrystallites via γ-irradiation route in isopropyl alcohol" 78 : 495-500, 2002

      8 Davis, R. L, "The development andfunctions of silver in water purification and disease control" 36 : 107-, 1997

      9 Holt, K. B, "The Interaction of Silver(I) Ions with the Respiratory Chain of Escherichia coli: AnElectrochemical and Scanning Electrochemical MicroscopyStudy of the Antimicrobial Mechanism of Micromolar Ag+" 44 : 13214-13223, 2005

      10 Gutierrez, F. M., "Synthesis, characterization, and evaluation of antimicrobialand cytotoxic effect of silver and titanium nanoparticles" 6 : 681-688, 2010

      1 김지연, "은(Ag)의 미생물 불활성화 특성 및 기작" 한국공업화학회 20 (20): 251-257, 2009

      2 Butkus, M. A., "Use of aqueous silver to enhance inactivationof coliphage MS-2 by UV disinfection" 70 : 2848-2853, 2004

      3 Carlson, C., "Unique cellular interaction of silver nanoparticles: sizedependentgeneration of reactive oxygen species" 112 : 13608-13619, 2008

      4 Tian, J., "Topical delivery ofsilver nanoparticles promotes wound healing" 2 : 129-136, 2007

      5 Pedahzur, R., "Theinteraction of silver ions and hydrogen peroxide in theinactivation of E. coli: a preliminary evaluation of a newlong acting residual drinking water disinfectant" 31 : 123-129, 1995

      6 Morones, J. R., "Thebactericidal effect of silver nanoparticles" 16 : 2345-2353, 2005

      7 Yang, Q., "The formation of fractal Ag nanocrystallites via γ-irradiation route in isopropyl alcohol" 78 : 495-500, 2002

      8 Davis, R. L, "The development andfunctions of silver in water purification and disease control" 36 : 107-, 1997

      9 Holt, K. B, "The Interaction of Silver(I) Ions with the Respiratory Chain of Escherichia coli: AnElectrochemical and Scanning Electrochemical MicroscopyStudy of the Antimicrobial Mechanism of Micromolar Ag+" 44 : 13214-13223, 2005

      10 Gutierrez, F. M., "Synthesis, characterization, and evaluation of antimicrobialand cytotoxic effect of silver and titanium nanoparticles" 6 : 681-688, 2010

      11 Chen, P., "Synthesis ofsilver nanoparticles by 1-ray irradiation in acetic watersolution containing chitosan" 76 : 1165-1168, 2007

      12 Shahverdi, A. R., "Synthesis and effect of silver nanoparticleson the antibacterial activity of different antibiotics againstStaphylococcus aureus and Escherichia coli" 3 : 168-171, 2007

      13 Li, P., "Synergisticantibacterial effects of β-lactam antibiotic combined withsilver nanoparticles" 16 : 1912-1917, 2005

      14 Kora, A. J, "Superior bactericidal activity of SDS capped silvernanoparticles: synthesis and characterization" 29 : 2104-2109, 2009

      15 Choi, O, "Size dependent and reactiveoxygen species related nanosilver toxicity to nitrifyingbacteria" 42 : 4583-4588, 2008

      16 Izatt, R. M., "Sitesand thermodynamic quantities associated with proton andmetal ion interaction with ribonucleic acid, deoxyribonucleicacid, and their constituent bases, nucleosides, and nucleotides" 71 : 439-481, 1971

      17 Lok, C. N., "Silvernanoparticles: partial oxidation and antibacterial activities" 12 : 527-534, 2007

      18 Kumar, A., "Silver-nanoparticle-embedded antimicrobial paints based onvegetable oil" 7 : 236-241, 2008

      19 "Silver-ion-mediated reactive oxygen species generation affecting bactericidal activity" 43 (43): 1027-1032, 200903

      20 Arakawa, H., "Silver(I) complexes with DNA and RNA studied by Fouriertransform infrared spectroscopy and capillary electrophoresis" 81 : 1580-1587, 2001

      21 Kalishwaralal, K., "Silver nanoparticlesimpede the biofilm formation by Pseudomonas aeruginosaand Staphylococcus epidermidis" 79 : 340-344, 2010

      22 Sondi, I, "Silver nanoparticles asantimicrobial agent: a case study on E. coli as a model forGram-negative bacteria" 275 : 177-182, 2004

      23 Kokura, S., "Silver nanoparticles as a safe preservativefor use in cosmetics" 6 : 570-574, 2010

      24 Pedahzur, R., "Silver andhydrogen peroxide as potential drinking water disinfectants:Their bactericidal effects and possible modes of action" 35 : 87-93, 1997

      25 Shahverdi, A. R., "Rapid synthesis of silvernanoparticles using culture supernatants of Enterobacteria: anovel biological approach" 42 : 919-923, 2007

      26 Yeo, S. Y., "Preparation ofnanocomposite fibers for permanent antibacterial effect" 38 : 2143-2147, 2003

      27 Xu, G. N., "Preparation and characterization of stable monodispersesilver nanoparticles via photoreduction" 320 : 222-226, 2008

      28 Jain, P, "Potential of silver nanoparticlecoatedpolyurethane foam as an antibacterial water filter" 90 : 59-63, 2005

      29 Graf, P., "Peptide-coated silvernanoparticles: synthesis, surface chemistry, and pH-triggered,reversible assembly into particle assemblies" 15 : 5831-5844, 2009

      30 Chaloupka, K., "Nanosilver as a new generation of nanoproduct in biomedicalapplications" 28 : 580-588, 2010

      31 Alt, V., "Nanoparticulate silver. A new antimicrobial substancefor bone cement" 33 : 885-892, 2004

      32 Lara, H. H., "Mode of antiviral action of silvernanoparticles against HIV-1" 8 : 1-, 2010

      33 Liau, S. Y., "Interaction of silver-nitrate with readilyidentifiable groups: relationship to the antibacterial action ofsilver ions" 25 : 279-283, 1997

      34 Sekhon, B. S, "Inorganicnanomedicine-part 2" 6 : 612-618, 2010

      35 Lu, Y., "High-density silvernanoparticle film with temperature-controllable interparticlespacing for a tunable surface enhanced Raman scatteringsubstrate" 5 : 5-9, 2005

      36 Gogoi, S. K., "Green fluorescent proteinexpressing Escherichia coli as a model system forinvestigating the antimicrobial activities of silver nanoparticles" 22 : 9322-9328, 2006

      37 Gajbhiye, M., "Fungus-mediated synthesis of silver nanoparticles andtheir activity against pathogenic fungi in combination withfluconazole" 5 : 382-386, 2009

      38 Yang, W., "Food storage material silver nanoparticlesinterfere with DNA replication fidelity and bind with DNA" 20 : 85-102, 2009

      39 Cohen,M.L, "Epidemiology of drug resistance;implications for a post-antimicrobial era" 257 : 1050-1055, 1992

      40 Kim, J. Y, "Enhanced inactivation of E. coli and MS-2 phage by silver ions combined with UV-A and visible light irradiation" PERGAMON-ELSEVIER SCIENCE LTD 42 (42): 356-362, 2008

      41 Landeen, L. K., "Efficacy of copper and silver ions and reduced levels of freechlorine in inactivation of Legionella pneumophila" 55 : 3045-3050, 1989

      42 Roh, J. Y., "Ecotoxicity of Silver Nanoparticles on the Soil Nematode Caenorhabditis elegans Using Functional Ecotoxicogenomics" AMER CHEMICAL SOC 43 : 3933-3940, 2009

      43 Pal, S., "Does theantibacterial activity of silver nanoparticles depend on theshape of the nanoparticle? A study of the Gram-negativebacterium Escherichia coli" 73 : 1712-1720, 2007

      44 Greenfeld, J. I., "Decreased bacterialadherence and biofilm formation on chlorhexidine and silversulfadiazine-impregnated central venous catheters implantedin swine" 23 : 894-900, 1995

      45 Cha, K., "Comparison of acuteresponses of mice livers to short-term exposure to nanosizedor micro-sized silver particles" 30 : 1893-1899, 2008

      46 Tien, D. C., "Colloidal silver fabrication using the spark discharge systemand its antimicrobial effect on Staphylococcus aureus" 30 : 948-952, 2008

      47 Ravelin, J, "Chemistry of vegetation" 11 : 93-102, 1869

      48 Shrivastava, S, "Characterization of enhanced antibacterialeffects of novel silver nanoparticles" 18 : 225103-225112, 2007

      49 Shaligram, N. S., "Biosynthesis ofsilver nanoparticles using aqueous extract from the compactinproducing fungal strain" 44 : 939-943, 2009

      50 Nanda, A, "Biosynthesis of silvernanoparticles from Staphylococcus aureus and its antimicrobialactivity against MRSA and MRSE" 5 : 452-456, 2009

      51 Fayaz, A. M., "Biogenic synthesisof silver nanoparticles and their synergistic effect withantibiotics: a study against gram-positive and gram-negativebacteria" 6 : 103-109, 2010

      52 Yamanaka, M., "Bactericidalactions of a silver ion solution on Escherichia coli, studiedby energy-filtering transmission electron microscopy andproteomic analysis" 71 : 7589-7593, 2005

      53 Kim, J. S., "Antimicrobial effects of silver nanoparticles" ELSEVIER SCIENCE BV 3 (3): 95-101, 2007

      54 Kim, K. J., "Antifungal activity and mode of action of silver nano-particles on Candida albicans" SPRINGER 22 : 235-242, 2009

      55 김극준, "Antifungal Effect of Silver Nanoparticles on Dermatophytes" 한국미생물·생명공학회 18 (18): 1482-1484, 2008

      56 "Antibacterial activity and mechanism of action of the silver ion in Staphylococcus aureus and Escherichia coli" 74 : 2171-2178, 200804

      57 Imran, M., "Active foodpackaging evolution: transformation from micro- tonanotechnology" 50 : 799-821, 2010

      58 Courrol, L. C., "A simplemethod to synthesize silver nanoparticles by photoreduction" 305 : 54-57, 2007

      59 Vigneshwaran, N., "A novel one-pot ‘green’synthesis of stable silver nanoparticles using soluble starch" 341 : 2012-2018, 2006

      60 Feng, Q. L, "A mechanistic study of the antibacterial effectof silver ions on Escherichia coli and Staphylococcusaureus" 52 : 662-668, 2000

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2015-09-23 학술지명변경 외국어명 : Korean Journal of Microbiology and Biotechnology -> Microbiology and Biotechnology Letters KCI등재
      2010-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
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      1998-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.6 0.6 0.65
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.53 0.55 0.977 0.18
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