[1]
F. Pishbin, V. Mourino, J.B. Gilchrist, D.W. McComb, S. Kreppel, V. Salih and A. R. Boccaccini, Single-step electrochemical deposition of antimicrobial orthopaediccoatings based on a bioactive glass/chitosan/nano-silver composite system, Acta biomaterialia, 9(2013).
DOI: 10.1016/j.actbio.2013.03.006
Google Scholar
[2]
V.D. Praveena and K.V. Kumar, Physicochemical Studies on Nano Silver Particles Prepared by Green and Chemical Methods, In Advanced Materials Research, 938(2014) 242-250.
DOI: 10.4028/www.scientific.net/amr.938.242
Google Scholar
[3]
S.W. Kim, J.H. Jung, K. Lamsal, Y.S. Kim, J.S. Min and Y.S. Lee, Antifungal effects of silver nanoparticles (AgNPs) against various plant pathogenic fungi, Mycobiology, 40(2012) 53-58.
DOI: 10.5941/myco.2012.40.1.053
Google Scholar
[4]
X.J. Zhan, Y.Z. Xiong, Z. Liu and D.Z. Xie, Synthesis of silver carboxymethyl chitosan and its experimental study on its bacteriostasis, Chinese Journal of Biochemical Pharmaceutics, 22(2001) 142-143.
Google Scholar
[5]
Y. Echegoyen and C. Nerín, Nanoparticle release from nano-silver antimicrobial food containers. Food and Chemical Toxicology, 62(2013)16-22.
DOI: 10.1016/j.fct.2013.08.014
Google Scholar
[6]
A.M. Tugulea, D. Bérubé, M. Giddings, F. Lemieux, J. Hnatiw, J. Priem and M.L. Avramescu, Nano-silver in drinking water and drinking water sources: stability and influences on disinfection by-product formation, Environmental Science and Pollution Research, (2014).
DOI: 10.1007/s11356-014-2508-5
Google Scholar
[7]
A.F. Chrimes, K. Khoshmanesh, S.Y. Tang, B.R. Wood, P.R. Stoddart, S.S. Collins and K. Kalantar-Zadeh, In situ SERS probing of nano-silver coated individual yeast cells, Biosensors and Bioelectronics, 49(2013) 536-541.
DOI: 10.1016/j.bios.2013.05.053
Google Scholar
[8]
J. Dou, X. He, Y. Liu, Targeted therapeutic effect of anti-ABCG2 antibody combined with nano silver and vincristine on mouse myeloma cancer stem cells, Journal of nanoparticle research, 15(2013)1-12.
DOI: 10.1007/s11051-013-2127-y
Google Scholar
[9]
J.H. Jung, S.W. Kim, J.S. Min, Y.J. Kim, K. Lamsal, K.S. Kim, and Y.S. Lee, The effect of nano-silver liquid against the white rot of the green onion caused by Sclerotium cepivorum, Mycobiology, 38(2010) 39-45.
DOI: 10.4489/myco.2010.38.1.039
Google Scholar
[10]
L. Cheng, K. Zhang, M.D. Weir, H. Liu, X. Zhou and H.H. Xu, Effects of antibacterial primers with quaternary ammonium and nano-silver on< i>Streptococcus mutans impregnated in human dentin blocks. Dental Materials, 29(2013) 462-472.
DOI: 10.1016/j.dental.2013.01.011
Google Scholar
[11]
D.A. Rasko, D. RWebster, J.W. Sahl, A. Bashir, N. Boisen, F. Scheutz and M.K. Waldor, Origins of the E. coli strain causing an outbreak of hemolytic–uremic syndrome in Germany, New England Journal of Medicine, 365(2011) 709-717.
DOI: 10.1056/nejmoa1106920
Google Scholar
[12]
M.B. Fisher, M. Iriarte and K.L. Nelson, Solar water disinfection (SODIS) ofE. coli Enterococcus spp., and MS2 coliphage: Effects of additives and alternative container materials, Water research, 46(2012) 1745-1754.
DOI: 10.1016/j.watres.2011.12.048
Google Scholar
[13]
M.Z. David and R.S. Daum, Community-associated methicillin-resistant S. aureus: epidemiology and clinical consequences of an emerging epidemic. Clinical microbiology reviews, 23 (2010) 616-687.
DOI: 10.1128/cmr.00081-09
Google Scholar
[14]
C. Liu, A. Bayer, S.E. Cosgrove, R.S. Daum, S.K. Fridkin, R J. Gorwitz and H.F. Chambers, Clinical practice guidelines by the Infectious Diseases Society of America for the treatment of methicillin-resistant S. aureus infections in adults and children, Clinical infectious diseases, (2011).
DOI: 10.1093/cid/ciq146
Google Scholar
[15]
A.T. Nguyen C.K. Pham H.T. Pham H.L. Pham A.H. Nguyen L.T. Dang,H. Huynh Anh S.M. Cutting, T.N. Phan,B. subtilis Spores Expressing the VP28 Antigen: A Potential Oral Treatment to Protect Litopenaeus vannamei Against White Spot Syndrome, FEMS Microbiol Lett. 28(2014).
DOI: 10.1111/1574-6968.12546
Google Scholar
[16]
A. Hanifi, T. Culpepper, V. Mai, A. Anand, A.L. Ford, M. Ukhanova, M. Christman, T.A. Tompkins, W.J. Dahl, Evaluation of B. subtilis R0179 on gastrointestinal viability and general wellness: a randomised, double-blind, placebo-controlled trial in healthy adults, Benef Microbes, 25 (2014).
DOI: 10.3920/bm2014.0031
Google Scholar
[17]
I. Paramasiva, H.C. Sharma, P.V. Krishnayya, Antibiotics influence the toxicity of the delta endotoxins of B. thuringiensis towards the cotton bollworm, Helicoverpa armigera, BMC Microbiol, 24(2014)200.
DOI: 10.1186/1471-2180-14-200
Google Scholar
[18]
X. Liu, L. Ruan, D. Peng, L. Li, M. Sun, Z. Yu, Thuringiensin: A Thermostable Secondary Metabolite from B. thuringiensis with Insecticidal Activity against a Wide Range of Insects, Toxins (Basel). 6(2014)2229-38.
DOI: 10.3390/toxins6082229
Google Scholar
[19]
M. Rai, K. Kon, A. Ingle, N. Duran,. Galdiero and M. Galdiero, Broad-spectrum bioactivities of silver nanoparticles: the emerging trends and future prospects, Applied microbiology and biotechnology, 98(2014) 1951-(1961).
DOI: 10.1007/s00253-013-5473-x
Google Scholar
[20]
B.S. Anisha, R. Biswas, K.P. Chennazhi and R. Jayakumar, Chitosan–hyaluronic acid/nano silver composite sponges for drug resistant bacteria infected diabetic wounds, International journal of biological macromolecules, 62(2013)310-320.
DOI: 10.1016/j.ijbiomac.2013.09.011
Google Scholar
[21]
M.K. Sarmast, H. Salehi and M. Khosh-Khui, Nano silver treatment is effective in reducing bacterial contaminations of Araucaria excelsa R. Br. var. glauca explants, Acta Biologica Hungarica, 62(2011) 477-484.
DOI: 10.1556/abiol.62.2011.4.12
Google Scholar
[22]
N. Karimi, S. Minaei, M. Almassi and A.R. Shahverdi, Application of silver nano-particles for protection of seeds in different soils, African Journal of Agricultural Research, 7(2012) 1863-1869.
DOI: 10.5897/ajar11.1150
Google Scholar
[23]
K. Safavi, F. Mortazaeinezahad, M. Esfahanizadeh and M. javad Asgari, In vitro antibacterial activity of nanomaterial for using in tobacco plants tissue culture. World Academy of Science, Engineering and Technology, 79(2011) 372-373.
Google Scholar
[24]
D. Singh, V. Rathod, S. Ninganagouda, J. Hiremath, A.K. Singh and J. Mathew, Optimization and Characterization of Silver Nanoparticle by Endophytic Fungi Penicillium sp. Isolated from Curcuma longa (Turmeric) and Application Studies against MDR E. coli and S. aureus. Bioinorganic chemistry and applications, (2014).
DOI: 10.1155/2014/408021
Google Scholar
[25]
L. Qiu, P. Liu, L. Zhao, M. Wen, H. Yang, S. Fan, L. Zhou, Analysis of plant genomic DNAs and the genetic relationship among plants by using surface-enhanced Raman spectroscopy. Vibrational Spectroscopy, 72(2014) 134-141.
DOI: 10.1016/j.vibspec.2014.03.006
Google Scholar
[26]
G. Holla, R. Yeluri and A.K. Munshi, Evaluation of minimum inhibitory and minimum bactericidal concentration of nano-silver base inorganic anti-microbial agent (Novaron®) against streptococcus mutans, Contemporary clinical dentistry, 3(2012) 288.
DOI: 10.4103/0976-237x.103620
Google Scholar
[27]
K. Zhang, L. Cheng, S. Imazato, J.M. Antonucci, N.J. Lin, S. Lin-Gibson and H.H. Xu, Effects of dual antibacterial agents MDPB and nano-silver in primer on microcosm biofilm, cytotoxicity and dentine bond properties, Journal of dentistry, 41(2013).
DOI: 10.1016/j.jdent.2013.02.001
Google Scholar
[28]
K. Lamsal, S.W. Kim, J.H. Jung, Y.S. Kim, K.S. Kim and Y.S. Lee, Application of silver nanoparticles for the control of Colletotrichum species in vitro and pepper anthracnose disease in field, Mycobiology, 39 (2011)194-199.
DOI: 10.5941/myco.2011.39.3.194
Google Scholar
[29]
J.H. Jung, S.W. Kim, J.S. Min, Y.J. Kim, K. Lamsal, K.S. Kim and Y.S. Lee, The effect of nano-silver liquid against the white rot of the green onion caused by Sclerotium cepivorum, Mycobiology, 38 (2010)39-45.
DOI: 10.4489/myco.2010.38.1.039
Google Scholar
[30]
S. Prabhu and E.K. Poulose, Silver nanoparticles: mechanism of antimicrobial action, synthesis, medical applications, and toxicity effects, International Nano Letters, 2 (2012)1-10.
DOI: 10.1186/2228-5326-2-32
Google Scholar
[31]
S.W. Kim, J.H. Jung, K. Lamsal, Y.S. Kim, J.S. Min and Y.S. Lee, Antifungal effects of silver nanoparticles (AgNPs) against various plant pathogenic fungi, Mycobiology, 40 (2012)53-58.
DOI: 10.5941/myco.2012.40.1.053
Google Scholar