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Comparative Study of the Bacteriological Activity of Zinc Oxide and Copper Oxide Nanoparticles Cover

Comparative Study of the Bacteriological Activity of Zinc Oxide and Copper Oxide Nanoparticles

Open Access
|May 2019

References

  1. [1] Hench, L.L.; West, J.K., The sol-gel process, Chem. Rev., 1990, 90, 33-7210.1021/cr00099a003
  2. [2] Wright, J. D.; Sommerdijk, N. A. J. M., Sol-gel materials: chemistry and applications. Advanced chemistry texts, 2001, 4. Amsterdam: Gordon and Breach Science Publishers.
  3. [3] Brinker, C. J.; Scherer, G. W., Sol-Gel Science: Physics and Chemistry of Sol-Gel Processing Academic Press, 1990
  4. [4]. Nejati, A.; Rezvani, Z.; Pakizev, R., Synthesis of ZnO Nanoparticles and Investigation of the Ionic Template Effect on Their Size and Shape, Int. Nano Lett., 2011,1(2), 75-81.
  5. [5]. Sharma, V., Sol-Gel mediated facile synthesis of Zinc-Oxide nanoaggregates their characterization and antibacterial activity, J.App. Chem., 2012, 6, 52-5510.9790/5736-0265255
  6. [6]. Azam, A.; Ahmed, S.A.; Oves, M.; Khan, S.M.; Habib, S.S.; Memic, A., Antimicrobial activity of metal oxide nanoparticles against Gram-positive and Gram-negative: a comparative study, Int. J. of Nanomedicine, 2012, 7, 6003-600910.2147/IJN.S35347351900523233805
  7. [7]. Sayes, C.M.; Reed, K.L.; Warheit, D.B., Assessing toxicity of fine and nanoparticles: comparing in vitro measurements to in vivo pulmonary toxicity profiles, Toxicol. Sci., 2007, 97(1), 163-180.10.1093/toxsci/kfm01817301066
  8. [8]. Hanley, C.; Thurber, A.; Hanna, C.; Punnoose, A.; Zhang, J.; Wingett, D.G., The Influences of Cell Type and ZnO Nanoparticle Size on Immune Cell Cytotoxicity and Cytokine Induction., Nanoscale Res. Lett., 2009, 4, 1409-1420.10.1007/s11671-009-9413-8
  9. [9]. Gojova, A.; Guo, B.; Kota, R.S.; Rutledge, J.C.; Kennedy, I.M.; Barakat, A.I., Induction of inflammation in vascular endothelial cells by metal oxide nanoparticles: effect of particle composition, Environ. Health Perspect., 2007, 115, 403-409.10.1289/ehp.8497
  10. [10]. Beyerie, A.; Schulz, H.; Kissel, T.; Stoeger, T., Screening strategy to avoid toxicological hazards of inhaled nanoparticles for drug delivery: the use of alpha-quartz and nano-zinc oxide particles as benchmark, Inhaled Particles, 2009, 151, 1-9.10.1088/1742-6596/151/1/012034
  11. [11]Croft, M., The role of TNF superfamily members in T-cell function and diseases, Nat. Rev. Immunol., 2009, 9, 271-285.10.1038/nri2526273740919319144
  12. [12] Lappin, M.B.; Campbell, J.D., The Th1-Th2 classification of cellular immune responses: concepts, current thinking and applications in hematological malignancy, Blood Rev., 2000, 14, 228-239.10.1054/blre.2000.0136
  13. [13] Scherrer, P., Göttinger Nachrichten Gesell., 1918, 2, 98
  14. [14] Patterson, A., “The Scherrer Formula for X-Ray Particle Size Determination”, Phys. Rev., 1939, 56(10), 978–98210.1103/PhysRev.56.978
DOI: https://doi.org/10.2478/asn-2019-0009 | Journal eISSN: 2603-347X | Journal ISSN: 2367-5144
Language: English
Page range: 63 - 72
Submitted on: Mar 1, 2019
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Accepted on: Apr 1, 2019
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Published on: May 27, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2019 Abdelali Merah, Abdenabi Abidi, Hana Merad, Noureddine Gherraf, Mostepha Iezid, Abdelghani Djahoudi, published by Konstantin Preslavski University of Shumen
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.