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Antibacterial and cytotoxic activity of metronidazole and levofloxacin composites with silver nanoparticle Cover

Antibacterial and cytotoxic activity of metronidazole and levofloxacin composites with silver nanoparticle

Open Access
|Dec 2021

References

  1. 1. Chopra I. The increasing use of silver-based products as antimicrobial agents: useful development or a cause for concern? J Antimicrob Chem. 2007;59:587-90.10.1093/jac/dkm006
  2. 2. Bilous S, Dmytriv G, Didikin G, Hudz N, Lesyk R, Kalynyuk T. Study of methal-organic nanomaterials structure by X-ray crystallography analysis as the basis for the development of quality control methods. J Pharm Pharmacol. 2015;3(12):562-8.
  3. 3. Trak htenberg IM, Ulberg ZR, Chekman IS, Dmy truk ha NM. Metodychni rekomendatsii Otsinka bezpeky likarskykh nanopreparativ. Kyiv; 2013:108.
  4. 4. Morones-Ramirez JR, Winkler JA, Spina CS, Collins JJ. Silver enhances antibiotic activity against gram-negative bacteria. Sci Transl Med. 2013;5(190):190.10.1126/scitranslmed.3006276377109923785037
  5. 5. Movchan BA. Discrete nanosized metallic coatings produced by EB-PVD. Surf Eng. 2016;32(4):258-66.10.1179/1743294415Y.0000000092
  6. 6. Panáček A, Kvítek L, Smékalová M, Večeřová R, Kolář M, Röderová M, et al. Bacterial resistance to silver nanoparticles and how to overcome it. Nat Nanotechnol. 2018;13:65-71.10.1038/s41565-017-0013-y29203912
  7. 7. Burdușel AC, Gherasim O, Grumezescu AM, Mogoanta L, Ficai A, Andronescu E. Biomedical applications of silver nanoparticles: An up-to-date overview Nanomaterials. 2018;8(9):681.10.3390/nano8090681
  8. 8. Choi Y, Kim H-A, Kim K-W, Lee B-T. Comparative toxicity of silver nanoparticles and silver ions to Escherichia coli. J Environ Sci. 2018;6:50-60.10.1016/j.jes.2017.04.02829628108
  9. 9. Díez-Pascual A-M. Antibacterial activity of nanomaterials. Nanomaterials. 2018;8:359.10.3390/nano8060359602733729882933
  10. 10. Some S, Sen JK, Mandal A, Asla T, Ustun Y, Yilmaz ES, et al. Biosynthesis of Silver Nanoparticles and Their Versatile Antimicrobial Properties. Mater Res Express. 2018;6(1).10.1088/2053-1591/aae23e
  11. 11. Ruden S, Hilpert K, Berditsch M, Wadhwani P, Ulrich AS. Synergistic interaction between silver nanoparticles and membrane-permeabilizing antimicrobial peptides. Antibiotic Agents Chemotherapy. 2009;53(8):3538-40.10.1128/AAC.01106-08271564219528287
  12. 12. Jain J, Arora S, Rajwade J, Onroy P, Khandelwal S, Paknikar KM. Silver nanoparticles in therapeutics: development of an antimicrobial gel formulation for topical use. Mol Pharm. 2009;6 (5):1388-401.10.1021/mp900056g19473014
  13. 13. Raheman F, Deshmukh S, Ingle A, Gade A, Rai M. Silver nanoparticles: novel antimicrobial agent synthesized from an endophytic fungus pestalotia sp. isolated from leaves of Syzygium cumini (L). Nano Biomed Eng. 2011;3(3):174-8.10.5101/nbe.v3i3.p174-178
DOI: https://doi.org/10.2478/cipms-2021-0040 | Journal eISSN: 2300-6676 | Journal ISSN: 2084-980X
Language: English
Page range: 224 - 228
Submitted on: Feb 4, 2020
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Accepted on: Dec 1, 2021
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Published on: Dec 30, 2021
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2021 Oleg Ilkov, Nazar Manko, Svitlana Bilous, Gennadi Didikin, Olga Klyuchivska, N. Dilay, Rostyslav Stoika, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.