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Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles

Green nanomaterials have gained much attention due to their potential use as therapeutic agents. The present study investigated the production of silver nanoparticles (AgNPs) from a silver-resistant Bacillus safensis TEN12 strain, which was isolated from metal contaminated soil and taxonomically ide...

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Autores principales: Ahmed, Temoor, Shahid, Muhammad, Noman, Muhammad, Bilal Khan Niazi, Muhammad, Zubair, Muhammad, Almatroudi, Ahmad, Khurshid, Mohsin, Tariq, Farheen, Mumtaz, Rabia, Li, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7296185/
https://www.ncbi.nlm.nih.gov/pubmed/32566283
http://dx.doi.org/10.1016/j.jare.2020.05.011
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author Ahmed, Temoor
Shahid, Muhammad
Noman, Muhammad
Bilal Khan Niazi, Muhammad
Zubair, Muhammad
Almatroudi, Ahmad
Khurshid, Mohsin
Tariq, Farheen
Mumtaz, Rabia
Li, Bin
author_facet Ahmed, Temoor
Shahid, Muhammad
Noman, Muhammad
Bilal Khan Niazi, Muhammad
Zubair, Muhammad
Almatroudi, Ahmad
Khurshid, Mohsin
Tariq, Farheen
Mumtaz, Rabia
Li, Bin
author_sort Ahmed, Temoor
collection PubMed
description Green nanomaterials have gained much attention due to their potential use as therapeutic agents. The present study investigated the production of silver nanoparticles (AgNPs) from a silver-resistant Bacillus safensis TEN12 strain, which was isolated from metal contaminated soil and taxonomically identified through 16S rRNA gene sequencing. The formation of AgNPs in bacterial culture was confirmed by using UV–vis spectroscopy with an absorption peak at 426.18 nm. Fourier transform infrared (FTIR) spectroscopy confirmed the involvement of capping proteins and alcohols for stabilization of AgNPs. Moreover, X-ray diffraction analysis (XRD), scanning and transmission electron microscopy (SEM and TEM) confirmed the crystalline nature and spherical shape of AgNPs with particle size ranging from 22.77 to 45.98 nm. The energy dispersive X-ray spectroscopy (EDX) revealed that 93.54% silver content is present in the nano-powder. AgNPs showed maximum antibacterial activity (20.35 mm and 19.69 mm inhibition zones) at 20 µg mL(−1) concentration against Staphylococcus aureus and Escherichia coli, respectively and significantly reduced the pathogen density in broth culture. Furthermore, AgNPs demonstrated significant anticancer effects in the human liver cancer cell line (HepG2) in MTT assay, whereas, no cytotoxic effects were demonstrated by AgNPs on normal cell line (HEK293). The present study suggests that the biogenic AgNPs may substitute chemically synthesized drugs with wider applications as antibacterial and anticancer agents.
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spelling pubmed-72961852020-06-18 Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles Ahmed, Temoor Shahid, Muhammad Noman, Muhammad Bilal Khan Niazi, Muhammad Zubair, Muhammad Almatroudi, Ahmad Khurshid, Mohsin Tariq, Farheen Mumtaz, Rabia Li, Bin J Adv Res Article Green nanomaterials have gained much attention due to their potential use as therapeutic agents. The present study investigated the production of silver nanoparticles (AgNPs) from a silver-resistant Bacillus safensis TEN12 strain, which was isolated from metal contaminated soil and taxonomically identified through 16S rRNA gene sequencing. The formation of AgNPs in bacterial culture was confirmed by using UV–vis spectroscopy with an absorption peak at 426.18 nm. Fourier transform infrared (FTIR) spectroscopy confirmed the involvement of capping proteins and alcohols for stabilization of AgNPs. Moreover, X-ray diffraction analysis (XRD), scanning and transmission electron microscopy (SEM and TEM) confirmed the crystalline nature and spherical shape of AgNPs with particle size ranging from 22.77 to 45.98 nm. The energy dispersive X-ray spectroscopy (EDX) revealed that 93.54% silver content is present in the nano-powder. AgNPs showed maximum antibacterial activity (20.35 mm and 19.69 mm inhibition zones) at 20 µg mL(−1) concentration against Staphylococcus aureus and Escherichia coli, respectively and significantly reduced the pathogen density in broth culture. Furthermore, AgNPs demonstrated significant anticancer effects in the human liver cancer cell line (HepG2) in MTT assay, whereas, no cytotoxic effects were demonstrated by AgNPs on normal cell line (HEK293). The present study suggests that the biogenic AgNPs may substitute chemically synthesized drugs with wider applications as antibacterial and anticancer agents. Elsevier 2020-05-17 /pmc/articles/PMC7296185/ /pubmed/32566283 http://dx.doi.org/10.1016/j.jare.2020.05.011 Text en © 2020 THE AUTHORS. Published by Elsevier BV on behalf of Cairo University. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Ahmed, Temoor
Shahid, Muhammad
Noman, Muhammad
Bilal Khan Niazi, Muhammad
Zubair, Muhammad
Almatroudi, Ahmad
Khurshid, Mohsin
Tariq, Farheen
Mumtaz, Rabia
Li, Bin
Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
title Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
title_full Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
title_fullStr Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
title_full_unstemmed Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
title_short Bioprospecting a native silver-resistant Bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
title_sort bioprospecting a native silver-resistant bacillus safensis strain for green synthesis and subsequent antibacterial and anticancer activities of silver nanoparticles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7296185/
https://www.ncbi.nlm.nih.gov/pubmed/32566283
http://dx.doi.org/10.1016/j.jare.2020.05.011
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