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2020 | 30 | 2 |

Tytuł artykułu

Investigation on the role of nanoparticle on microbial nano interface to understand pathogenecity

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

30

Numer

2

Opis fizyczny

p.89-95,fig.,ref.

Twórcy

autor
  • Nanobiotherapeutics Laboratory, National Centre for Nanoscience and Nanotechnology, University of Madras, Guindy Campus, Chennai 600025, Tamil Nadu, India
  • Nanobiotherapeutics Laboratory, National Centre for Nanoscience and Nanotechnology, University of Madras, Guindy Campus, Chennai 600025, Tamil Nadu, India
autor
  • Nanobiotherapeutics Laboratory, National Centre for Nanoscience and Nanotechnology, University of Madras, Guindy Campus, Chennai 600025, Tamil Nadu, India

Bibliografia

  • [1] S. Dehnavi, A. Raisi, and A. Aroujalian, Control Size and Stability of Colloidal Silver Nanoparticles with Antibacterial Activity Prepared by a Green Synthesis Method. Synth. React. Inorganic, Met. Nano-Metal Chem. vol. 43, no. 5, pp. 543-551, Jan. 2013.
  • [2] Ahmad, A. Senapati, S. Khan, M. I. Kumar, R. Sastry, M. (2005). Extra-/intracellular, biosynthesis of gold nanoparticles by an alkalotolerant fungus, Trichothecium sp. J. Biomed. Nanotechnol. 1, 47-53
  • [3] Atta-ur R, Iqbal CM, Afgan F, Aftab A, Zafar IM, Betul D, Husnu CB. (2000). Antifungal activities and essential oil constituents of some spices from Pakistan. J Chem Soc Pak 22, 60-65
  • [4] Sadeghi and F. Gholamhoseinpoor, A study on the stability and green synthesis of silver nanoparticles using Ziziphora tenuior (Zt) extract at room temperature. Spectrochim. Acta Part A Mol. Biomol. Spectrosc. 134, pp. 310-315, Jan. 2015.
  • [5] Becerril R, Gomez-Lus R, Goni P, Lopez P, Nerin C. Combination of analytical and microbiological techniques to study the antimicrobial activity of a new active food packaging containing cinnamon or oregano against E. coli and S. aureus. Anal Bioanal Chem 388, 1003-11, 2007
  • [6] Chao LK, Hua KF, Hsu HY, Cheng SS, Liu JY, Chang ST. Study on the Antiinflammatory activity of essential oil from leaves of Cinnamomum osmophloeum. J Agri Food Chem 2005, 53, 7274-78
  • [7] Goni P, Lopez P, Sanchez C, Gomez LR, Becerril R, Nerin C. Antimicrobial activity in the vapour phase of a combination of cinnamon and clove essential oils. Food Chem 116, 982-89, 2009
  • [8] Jakhetia V, Patel R, Khatri P. Cinnamon: a pharmacological review. J Adv Sci Res 2010, 1, 19-12
  • [9] Harris, A. T. Bali, R. (2008). On the formation and extent of uptake of silver nanoparticles by live plants. J. Nanopart. Res. 10(4), 691-695
  • [10] Hayashi K, Imanishi N, Kashiwayama Y, Kawanod A, Terasawa K, Shimada Y, Ochiai H. Inhibitory effect of cinnamaldehyde, derived from cinnamomi cortex, on the growth of influenza A/PR/8 virus in vitro and in vivo. Antiviral Res 74, 1-8, 2007
  • [11] Husseiny, M. I.; El-Aziz, M. A.; Badr, Y.; Mahmoud M. A. (2007). Biosynthesis of gold nanoparticles using Pseudomonas aeruginosa. Spectrochim. Acta A 67 (3-4), 1003-1006
  • [12] Gehrke, A. Geiser, and A. Somborn-Schulz. Innovations in nanotechnology for water treatment. Nanotechnol. Sci. Appl. 8, 1-17, 2015.
  • [13] Ibrahim BJ, Bushra AKM, Jacintha S, Jamia AJ. (2008). Correlation between chemical composition and antifungal activity of the essential oils of eight cinnamomum species. Pharm Biol 46, 406-412
  • [14] IM K, Issac A, NM J, Ninan E, Maliakel B, Kuttan R. Effects of the polyphenol content on the anti-diabetic activity of Cinnamomum zeylanicum extracts. Food Funct 2014, 5, 220820
  • [15] Iravani S. (2011). Green synthesis of metal nanoparticles using plants. Green Chem 13(10), 2638-2650
  • [16] J.A. Dahl, B.L.S. Maddux, J.E. Hutchison, Toward greener nanosynthesis. Chem. Rev. 107 (2007) 2228-2269
  • [17] J. Kim, Y. Rheem, B. Yoo, Y. Chong, K.N. Bozhilov, D. Kim, M.J. Sadowsky, H.G. Hur, N.V. Myung, (2010) Peptide-mediated shape-and size-tunable synthesis of gold nanostructures, Acta Biomater. 6, 2681-2689
  • [18] Jakhetia V, Patel R, Khatri P, Pahuja N, Garg S, Pandey A, Sharma S. (2010). Cinnamaon: A pharmacological review. J Adv Sci Res 1, 19-23
  • [19] Jha AK, Prasad K, Prasad K, Kulkarni AR. (2009). Plant system: nature’s nanofactory. Colloids Surf. B. Biointerf. 73(2), 219-223
  • [20] Jia, L., Zhang, Q. Li, Q., Song, H. (2009). The biosynthesis of palladium nanoparticles by antioxidants in Gardenia jasminoides Ellis: long lifetime nanocatalysts for p-nitrotoluene hydrogenation. Nanotechnology 20, 38560
  • [21] Jia Q, Liu X, Wu X, et al. Hypoglycemic activity of a polyphenolic oligomer-rich extract of Cinnamomum parthenoxylon bark in normal and streptozotocin-induced diabetic rats. Phytomedicine 16, 744-50, 2009
  • [22] H. I. Abdullah, K. J. Kadhim, I. H. Hilal, Study the Radiation Time Effect of Synthesis Silver Nanoparticles by Photo Reduction Method. World Scientific News 37 (2016) 220-231
  • [23] T. Sowmyya, G. Vijaya Lakshmi, Soymida febrifuga aqueous root extract maneuvered silver nanoparticles as mercury nanosensor and potential microbicide. World Scientific News 114 (2018) 84-105

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-38bc18cb-95df-4782-a771-55fd285ddd4e
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