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Research Article

Characterization and antimicrobial application of biosynthesized gold and silver nanoparticles by using Microbacterium resistens

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Pages 1714-1721 | Received 15 Jul 2015, Accepted 27 Aug 2015, Published online: 23 Nov 2015

References

  • Abbas A, Naz SS, Syed SA. 2015. Antimicrobial activity of silver nanoparticles (AgNPs) against Erwinia carotovora pv. Carotovora and Alternaria solani. Int J Biosci. 6:9–14.
  • Ahmed KB, Kalla D, Uppuluri KB, Anbazhagan V. 2014. Green synthesis of silver and gold nanoparticles employing levan, a biopolymer from Acetobacter xylinum NCIM 2526, as a reducing agent and capping agent. Carbohydr Polym. 112:539–545.
  • Anil Kumar S, Abyaneh M, Gosavi SW, Kulkarni S, Pasricha R, Ahmad A, Khan MI. 2007. Nitrate reductase-mediated synthesis of silver nanoparticles from AgNO3. Biotechnol Lett. 29:439–445.
  • Aniszewski E, Peixoto RS, Mota FF, Leite SGF, Rosado AS. 2010. Bioemulsifier production by Microbacterium sp. strains isolated from mangrove and their application to remove cadmium and zinc from hazardous industrial residue. Braz J Microbiol. 41:235–245.
  • Asker MMS, Ahmed YM, Ramadan MF. 2009. Chemical characteristics and antioxidant activity of exopolysaccharide fractions from Microbacterium terregens. Carbohydr Polym. 77:563–567.
  • Avalos A, Haza AI, Drosopoulou E, Mavragani-Tsipidou P, Morales P. 2015. In vivo genotoxicity assesment of silver nanoparticles of different sizes by the Somatic Mutation and Recombination Test (SMART) on Drosophila. Food Chem Toxicol. [Epub ahead of print]. DOI:https://doi.org/10.1016/j.fct.2015.06.024.
  • Biswas A, Aktas O, Sch Rmann U, Saeed U, Zaporojtchenko V, Faupel F, Strunskus T. 2004. Tunable multiple plasmon resonance wavelengths response from multicomponent polymer–metal nanocomposite systems. Appl Phys Lett. 84:2655–2657.
  • Chaloupka K, Malam Y, Seifalian AM. 2010. Nanosilver as a new generation of nanoproduct in biomedical applications. Trends Biotechnol. 28:580–588.
  • Cheng LQ, NA JR, Bang MH, Kim MK, Yang DC. 2008. Conversion of major ginsenoside Rb1 to 20(S)-ginsenoside Rg3 by Microbacterium sp. GS514. Phytochemistry. 69:218–224.
  • Elavazhagan T, Arunachalam KD. 2011. Memecylon edule leaf extract mediated green synthesis of silver and gold nanoparticles. Int J Nanomed. 6:1265–1278.
  • Gurunathan S, Kalishwaralal K, Vaidyanathan R, Venkataraman D, Pandian SR, Muniyandi J, Hariharan N, Eom SH. 2009. Biosynthesis, purification and characterization of silver nanoparticles using Escherichia coli. Colloids Surf B Biointerfaces. 74:328–335.
  • Hulkoti NI, Taranath TC. 2014. Biosynthesis of nanoparticles using microbes – a review. Colloids Surf B Biointerfaces. 121:474–483.
  • Jo JH, Singh P, Kim YJ, Wang C, Mathiyalagan R, Jin CG, Yang DC. 2015. Pseudomonas deceptionensis DC5-mediated synthesis of extracellular silver nanoparticles. Artif Cells Nanomed Biotechnol. [Epub ahead of print]. DOI:https://doi.org/10.3109/21691401.2015.1068792.
  • Joseph S, Mathew B. 2014. Microwave assisted facile green synthesis of silver and gold nanocatalysts using the leaf extract of Aerva lanata. Spectrochim Acta A Mol Biomol Spectrosc. 136PC:1371–1379.
  • Kalabegishvili TL, Murusidze IG, Kirkesali EI, Rcheulishvili AN, Ginturi EN, Gelagustashvili ES, et al. 2013. Development of biotechnology for microbial synthesis of gold and silver nanoparticles. J Life Sci. (El Monte, CA, US). 7:110–122.
  • Khan AK, Rashid R, Murtaza G, Zahra A. 2014. Gold nanoparticles: synthesis and applications in drug delivery. Trop J Pharm Res. 13:1169–1177.
  • Kotakadi VS, Gaddam SA, Venkata SK, Prasad TNVKV, Sai Gopal DVR. 2015. Ficus fruit-mediated biosynthesis of silver nanoparticles and their antibacterial activity against antibiotic resistant E. coli strains. Curr Nanosci. 11:527–538.
  • Magudapathy P, Gangopadhyay P, Panigrahi BK, Nair KGM, Dhara S. 2001. Electrical transport studies of Ag nanoclusters embedded in glass matrix. Phys B: Condens Matter. 299:142–146.
  • Mazur M. 2004. Electrochemically prepared silver nanoflakes and nanowires. Electrochem Commun. 6:400–403.
  • Mukherjee P, Senapati S, Mandal D, Ahmad A, Khan MI, Kumar R, Sastry M. 2002. Extracellular synthesis of gold nanoparticles by the fungus Fusarium oxysporum. ChemBioChem. 3:461–463.
  • Nagasundaram N, Rahuman MA, Raghavan PS. 2014. Antibacterial application studies of nanosilver incorporated products. Int J Pharm Res Bio – Sci. 3:153–164.
  • Naqvi SZ, Kiran U, Ali MI, Jamal A, Hameed A, Ahmed S, Ali N. 2013. Combined efficacy of biologically synthesized silver nanoparticles and different antibiotics against multidrug-resistant bacteria. Int J Nanomed. 8:3187–3195.
  • Pai AR, Kavitha S, Shweta RS, Priyanka P, Vrinda A, Vivin TS, Sasidharan S. 2015. Green synthesis and characterizations of silver nanoparticles using fresh leaf extract of Morinda citrifolia and its anti-microbial activity studies. Int J Pharm Pharm Sci. 7:459–461.
  • Parikh RY, Singh S, Prasad B, Patole MS, Sastry M, Shouche YS. 2008. Extracellular synthesis of crystalline silver nanoparticles and molecular evidence of silver resistance from Morganella sp.: towards understanding biochemical synthesis mechanism. ChemBioChem. 9:1415–1422.
  • Park HY, Son GH, Kim DY, Shin DH, Cho HY. 2014. Alkali-resistant glycoside hydrolase family 10 xylanase from Microbacterium sp. HY-17. Copyright (C) 2015 American Chemical Society (ACS). All Rights Reserved.
  • Piruthiviraj P, Margret A, Krishnamurthy PP. 2015. Gold nanoparticles synthesized by Brassica oleracea (Broccoli) acting as antimicrobial agents against human pathogenic bacteria and fungi. Appl Nanosci. [Epub ahead of print]. DOI:https://doi.org/10.1007/s13204-015-0460-4.
  • Prabavathy D, Niveditha R, Vaishnavie R. 2015. Antimicrobial activity of silver nanoparticles synthesized by endophytic Aspergillus sp isolated from Justicia beddomei. J Chem Pharm Res. 7:784–788.
  • Prabhu S, Poulose E. 2012. Silver nanoparticles: mechanism of antimicrobial action, synthesis, medical applications, and toxicity effects. Int Nano Lett. 2:1–10.
  • Priyadharshini RR, Parthiban S, Srinithya B, Vinod KV, Philip AS, Sivasubramanian A, Sundaram MM. 2015. Biogenic silver nanoparticles synthesis using the extract of the medicinal plant Clerodendron serratum and its in-vitro antiproliferative activity. Mater Lett. 160:400–403.
  • Reddy AS, Chen CY, Chen CC, Jean JS, Chen HR, Tseng MJ, Fan CW, Wang JC. 2010. Biological synthesis of gold and silver nanoparticles mediated by the bacteria Bacillus subtilis. J Nanosci Nanotechnol. 10:6567–6574.
  • Salunkhe PR, Nayak SS. 2012. Microbial synthesis of silver nanoparticles and their applications in medical textiles. Man-Made Text India. 40:125–128.
  • Saravanan M, Nanda A. 2010. Extracellular synthesis of silver bionanoparticles from Aspergillus clavatus and its antimicrobial activity against MRSA and MRSE. Colloids Surf B Biointerfaces. 77:214–218.
  • Sathyavathi S, Manjula A, Rajendhran J, Gunasekaran P. 2014. Extracellular synthesis and characterization of nickel oxide nanoparticles from Microbacterium sp. MRS-1 towards bioremediation of nickel electroplating industrial effluent. Bioresour Technol. 165:270–273.
  • Sengottaiyan A, Mythili R, Selvankumar T, Aravinthan A, Kamala-Kannan S, Manoharan K, Thiyagarajan P, Govarthanan M, Kim JH. 2015. Green synthesis of silver nanoparticles using Solanum indicum L. and their antibacterial, splenocyte cytotoxic potentials. Res Chem Intermed. [Epub ahead of print]. DOI:https://doi.org/10.1007/s11164-015-2199-7.
  • Singh P, Kim YJ, Wang C, Mathiyalagan R, Yang DC. 2015a. Microbial synthesis of Flower-shaped gold nanoparticles. Artif Cells Nanomed Biotechnol. [Epub ahead of print]. DOI:https://doi.org/10.3109/21691401.2015.1041640.
  • Singh P, Kim YJ, Singh H, Mathiyalagan R, Wang C, Yang DC. 2015b. Biosynthesis of anisotropic silver nanoparticles by Bhargavaea indica and their synergistic effect with antibiotics against pathogenic microorganisms. J Nanomater. 2015:234741.
  • Singh P, Kim YJ, Singh H, Wang C, Hwang KH, Farh mel A, Yang DC. 2015c. Biosynthesis, characterization, and antimicrobial applications of silver nanoparticles. Int J Nanomed. 10:2567–2577.
  • Singh P, Kim YJ, Wang C, Mathiyalagan R, El-agamy farh M, Yang DC. 2015d. Biogenic silver and gold nanoparticles synthesized using red ginseng root extract, and their applications. Artif Cells Nanomed Biotechnol. [Epub ahead of print]. DOI:https://doi.org/10.3109/21691401.2015.1008514.
  • Singh P, Kim YJ, Wang C, Mathiyalagan R, Yang DC. 2015e. The development of a green approach for the biosynthesis of silver and gold nanoparticles by using Panax ginseng root extract, and their biological applications. Artif Cells Nanomed Biotechnol. [Epub ahead of print]. DOI:https://doi.org/10.3109/21691401.2015.1011809.
  • Singh P, Kim YJ, Wang C, Mathiyalagan R, Yang DC. 2015f. Weissella oryzae DC6-facilitated green synthesis of silver nanoparticles and their antimicrobial potential. Artif Cells Nanomed Biotechnol. [Epub ahead of print]. DOI:https://doi.org/10.3109/21691401.2015.1064937.
  • Sunkar S, Nachiyar CV. 2012. Biogenesis of antibacterial silver nanoparticles using the endophytic bacterium Bacillus cereus isolated from Garcinia xanthochymus. Asian Pac J Trop Biomed. 2:953–959.
  • Swamy MK, Akhtar MS, Mohanty SK, Sinniah UR. 2015. Synthesis and characterization of silver nanoparticles using fruit extract of Momordica cymbalaria and assessment of their in vitro antimicrobial, antioxidant and cytotoxicity activities. Spectrochim Acta Part A. 151:939–944.
  • Tran PA, Hocking DM, O'Connor AJ. 2015. In situ formation of antimicrobial silver nanoparticles and the impregnation of hydrophobic polycaprolactone matrix for antimicrobial medical device applications. Mater Sci Eng C. 47:63–69.
  • Wang C, Kim YJ, Singh P, Mathiyalagan R, Jin Y, Yang DC. 2015. Green synthesis of silver nanoparticles by Bacillus methylotrophicus, and their antimicrobial activity. Artif Cells Nanomed Biotechnol. [Epub ahead of print]. DOI:https://doi.org/10.3109/21691401.2015.1011805.
  • Yáñez-Sedeño P, Pingarrón JM. 2005. Gold nanoparticle-based electrochemical biosensors. Anal Bioanal Chem. 382:884–886.

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