Rapid Biosynthesis of AgNPs Using Soil Bacterium Azotobacter vinelandii With Promising Antioxidant and Antibacterial Activities for Biomedical Applications
Gopalu Karunakaran
1, 2
,
Matheswaran Jagathambal
3
,
Alexander Gusev
1, 4
,
Juan Antonio Lopez Torres
1
,
2
Department of Biotechnology, K. S. Rangasamy College of Arts and Science, Tiruchengode, India
|
3
Department of Bio-chemistry/Bio-technology/Bio-informatics, Avinashilingam Institute for Home Science and Higher Education for Women, Coimbatore, India
|
Тип публикации: Journal Article
Дата публикации: 2016-11-08
scimago Q2
wos Q2
БС2
SJR: 0.522
CiteScore: 3.7
Impact factor: 2.3
ISSN: 10474838, 15431851
General Materials Science
General Engineering
Краткое описание
Silver nanoparticles (AgNPs) are applied in various fields from electronics to biomedical applications as a result of their high surface-to-volume ratio. Even though different approaches are available for synthesis of AgNPs, a nontoxic method for the synthesis has not yet been developed. Thus, this study focused on developing an easy and ecofriendly approach to synthesize AgNPs using Azotobacter vinelandii culture extracts. The biosynthesized nanoparticles were further characterized by ultraviolet–visible (UV–Vis) spectroscopy, x-ray diffraction (XRD), Fourier transform infrared (FTIR), energy-dispersive spectrum, particle size distribution (PSD), and transmission electron microscopy (TEM). UV absorption noticed at 435 nm showed formation of AgNPs. The XRD pattern showed a face-centered cubic structure with broad peaks of ~28.2°, ~32.6°, ~46.6°, ~55.2°, ~57.9°, and ~67.8°. The FTIR confirmed the involvement of various functional groups in the biosynthesis of AgNPs. The PSD and TEM analyses showed spherical, well-distributed nanoparticles with an average size of 20–70 nm. The elemental studies confirmed the existence of pure AgNPs. The bacterial extract containing extracellular enzyme nitrate reductase converted silver nitrate into AgNPs. AgNPs significantly inhibited the growth of pathogenic bacteria such as Streptomyces fradiae (National Collection of Industrial Microorganisms (NCIM) 2419), Staphylococcus aureus (NCIM 2127), Escherichia coli (NCIM 2065), and Serratia marcescens (NCIM 2919). In addition, biosynthesized AgNPs were found to possess strong antioxidant activity. Thus, the results of this study revealed that biosynthesized AgNPs could serve as a lead in the development of nanomedicine.
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Karunakaran G. et al. Rapid Biosynthesis of AgNPs Using Soil Bacterium Azotobacter vinelandii With Promising Antioxidant and Antibacterial Activities for Biomedical Applications // JOM. 2016. Vol. 69. No. 7. pp. 1206-1212.
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Karunakaran G., Jagathambal M., Gusev A., Torres J. A. L., Kolesnikov E., Kuznetsov D. Rapid Biosynthesis of AgNPs Using Soil Bacterium Azotobacter vinelandii With Promising Antioxidant and Antibacterial Activities for Biomedical Applications // JOM. 2016. Vol. 69. No. 7. pp. 1206-1212.
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TY - JOUR
DO - 10.1007/s11837-016-2175-8
UR - http://link.springer.com/10.1007/s11837-016-2175-8
TI - Rapid Biosynthesis of AgNPs Using Soil Bacterium Azotobacter vinelandii With Promising Antioxidant and Antibacterial Activities for Biomedical Applications
T2 - JOM
AU - Karunakaran, Gopalu
AU - Jagathambal, Matheswaran
AU - Gusev, Alexander
AU - Torres, Juan Antonio Lopez
AU - Kolesnikov, Evgeny
AU - Kuznetsov, Denis
PY - 2016
DA - 2016/11/08
PB - Springer Nature
SP - 1206-1212
IS - 7
VL - 69
SN - 1047-4838
SN - 1543-1851
ER -
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@article{2016_Karunakaran,
author = {Gopalu Karunakaran and Matheswaran Jagathambal and Alexander Gusev and Juan Antonio Lopez Torres and Evgeny Kolesnikov and Denis Kuznetsov},
title = {Rapid Biosynthesis of AgNPs Using Soil Bacterium Azotobacter vinelandii With Promising Antioxidant and Antibacterial Activities for Biomedical Applications},
journal = {JOM},
year = {2016},
volume = {69},
publisher = {Springer Nature},
month = {nov},
url = {http://link.springer.com/10.1007/s11837-016-2175-8},
number = {7},
pages = {1206--1212},
doi = {10.1007/s11837-016-2175-8}
}
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MLA
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Karunakaran, Gopalu, et al. “Rapid Biosynthesis of AgNPs Using Soil Bacterium Azotobacter vinelandii With Promising Antioxidant and Antibacterial Activities for Biomedical Applications.” JOM, vol. 69, no. 7, Nov. 2016, pp. 1206-1212. http://link.springer.com/10.1007/s11837-016-2175-8.