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Synthesis of Bioactive Silver Nanoparticles Using New Bacterial Strains from an Antarctic Consortium.
John, Maria Sindhura; Nagoth, Joseph Amruthraj; Ramasamy, Kesava Priyan; Mancini, Alessio; Giuli, Gabriele; Miceli, Cristina; Pucciarelli, Sandra.
Afiliação
  • John MS; School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
  • Nagoth JA; Department of Dermatology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
  • Ramasamy KP; School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
  • Mancini A; School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
  • Giuli G; School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
  • Miceli C; School of Sciences and Technology, University of Camerino, 62032 Camerino, Italy.
  • Pucciarelli S; School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
Mar Drugs ; 20(9)2022 Aug 31.
Article em En | MEDLINE | ID: mdl-36135747
In this study, we report on the synthesis of silver nanoparticles (AgNPs) achieved by using three bacterial strains Rhodococcus, Brevundimonas and Bacillus as reducing and capping agents, newly isolated from a consortium associated with the Antarctic marine ciliate Euplotes focardii. After incubation of these bacteria with a 1 mM solution of AgNO3 at 22 °C, AgNPs were synthesized within 24 h. Unlike Rhodococcus and Bacillus, the reduction of Ag+ from AgNO3 into Ag0 has never been reported for a Brevundimonas strain. The maximum absorbances of these AgNPs in the UV-Vis spectra were in the range of 404 nm and 406 nm. EDAX spectra showed strong signals from the Ag atom and medium signals from C, N and O due to capping protein emissions. TEM analysis showed that the NPs were spherical and rod-shaped, with sizes in the range of 20 to 50 nm, and they were clustered, even though not in contact with one another. Besides aggregation, all the AgNPs showed significant antimicrobial activity. This biosynthesis may play a dual role: detoxification of AgNO3 and pathogen protection against both the bacterium and ciliate. Biosynthetic AgNPs also represent a promising alternative to conventional antibiotics against common nosocomial pathogens.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Nanopartículas Metálicas / Anti-Infecciosos Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Nanopartículas Metálicas / Anti-Infecciosos Idioma: En Ano de publicação: 2022 Tipo de documento: Article