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Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization

Driven by the need to biosynthesize alternate biomedical agents to prevent and treat infection, silver nanoparticles have surfaced as a promising avenue. Cyanobacteria-derived nanomaterial synthesis is of substantive interest as it offers an eco-friendly, cost-effective, sustainable, and biocompatib...

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Autores principales: Zaki, Almaz, Aziz, Md. Nafe, Ahmad, Rakhshan, Ahamad, Irshad, Ali, M. Shadab, Yasin, Durdana, Afzal, Bushra, Ali, Syed Mansoor, Chopra, Anita, Hadda, Vijay, Srivastava, Pooja, Kumar, Raj, Fatma, Tasneem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8979216/
https://www.ncbi.nlm.nih.gov/pubmed/35425239
http://dx.doi.org/10.1039/d1ra08396a
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author Zaki, Almaz
Aziz, Md. Nafe
Ahmad, Rakhshan
Ahamad, Irshad
Ali, M. Shadab
Yasin, Durdana
Afzal, Bushra
Ali, Syed Mansoor
Chopra, Anita
Hadda, Vijay
Srivastava, Pooja
Kumar, Raj
Fatma, Tasneem
author_facet Zaki, Almaz
Aziz, Md. Nafe
Ahmad, Rakhshan
Ahamad, Irshad
Ali, M. Shadab
Yasin, Durdana
Afzal, Bushra
Ali, Syed Mansoor
Chopra, Anita
Hadda, Vijay
Srivastava, Pooja
Kumar, Raj
Fatma, Tasneem
author_sort Zaki, Almaz
collection PubMed
description Driven by the need to biosynthesize alternate biomedical agents to prevent and treat infection, silver nanoparticles have surfaced as a promising avenue. Cyanobacteria-derived nanomaterial synthesis is of substantive interest as it offers an eco-friendly, cost-effective, sustainable, and biocompatible route for further development. In the present study optimal conditions for synthesis of silver nanoparticles (AgNPs) were 1 : 9 v/v [cell extract: AgNO(3) (1 mM)], pH 7.4, and 30 °C reaction temperatures. Synthesis of nanoparticles was monitored by UV-vis spectrophotometry and the maximum absorbance was observed at a wavelength of 420 nm. SEM with EDX analysis confirmed 96.85% silver by weight which revealed the purity of AgNPs. TEM & XRD analysis exhibited a particle size of ∼12 nm with crystalline nature. FTIR analysis confirmed the presence of possible biomolecules involved in the synthesis and stabilization of AgNPs. Decapping of AgNPs followed by SDS-PAGE, LCMS and MALDI TOF analysis elucidates the proteinaceous nature of the capping and stabilizing agent. Cyanobacterial-derived capped AgNPs showed more cytotoxicicity towards a non-small cell lung cancer (A549) cell line, free radical scavenger and an antimicrobial than de-capped AgNPs. In addition they showed significant synergistic characteristics with antibiotics and fungicides. The test revealed that the capped AgNPs were biocompatible with good anti-inflammatory properties. The blend of antimicrobial and biocompatible properties, coupled with their intrinsic “green” and facile synthesis, made these biogenic nanoparticles particularly attractive for future applications in nanomedicine.
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spelling pubmed-89792162022-04-13 Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization Zaki, Almaz Aziz, Md. Nafe Ahmad, Rakhshan Ahamad, Irshad Ali, M. Shadab Yasin, Durdana Afzal, Bushra Ali, Syed Mansoor Chopra, Anita Hadda, Vijay Srivastava, Pooja Kumar, Raj Fatma, Tasneem RSC Adv Chemistry Driven by the need to biosynthesize alternate biomedical agents to prevent and treat infection, silver nanoparticles have surfaced as a promising avenue. Cyanobacteria-derived nanomaterial synthesis is of substantive interest as it offers an eco-friendly, cost-effective, sustainable, and biocompatible route for further development. In the present study optimal conditions for synthesis of silver nanoparticles (AgNPs) were 1 : 9 v/v [cell extract: AgNO(3) (1 mM)], pH 7.4, and 30 °C reaction temperatures. Synthesis of nanoparticles was monitored by UV-vis spectrophotometry and the maximum absorbance was observed at a wavelength of 420 nm. SEM with EDX analysis confirmed 96.85% silver by weight which revealed the purity of AgNPs. TEM & XRD analysis exhibited a particle size of ∼12 nm with crystalline nature. FTIR analysis confirmed the presence of possible biomolecules involved in the synthesis and stabilization of AgNPs. Decapping of AgNPs followed by SDS-PAGE, LCMS and MALDI TOF analysis elucidates the proteinaceous nature of the capping and stabilizing agent. Cyanobacterial-derived capped AgNPs showed more cytotoxicicity towards a non-small cell lung cancer (A549) cell line, free radical scavenger and an antimicrobial than de-capped AgNPs. In addition they showed significant synergistic characteristics with antibiotics and fungicides. The test revealed that the capped AgNPs were biocompatible with good anti-inflammatory properties. The blend of antimicrobial and biocompatible properties, coupled with their intrinsic “green” and facile synthesis, made these biogenic nanoparticles particularly attractive for future applications in nanomedicine. The Royal Society of Chemistry 2022-01-18 /pmc/articles/PMC8979216/ /pubmed/35425239 http://dx.doi.org/10.1039/d1ra08396a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Zaki, Almaz
Aziz, Md. Nafe
Ahmad, Rakhshan
Ahamad, Irshad
Ali, M. Shadab
Yasin, Durdana
Afzal, Bushra
Ali, Syed Mansoor
Chopra, Anita
Hadda, Vijay
Srivastava, Pooja
Kumar, Raj
Fatma, Tasneem
Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization
title Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization
title_full Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization
title_fullStr Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization
title_full_unstemmed Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization
title_short Synthesis, purification and characterization of Plectonema derived AgNPs with elucidation of the role of protein in nanoparticle stabilization
title_sort synthesis, purification and characterization of plectonema derived agnps with elucidation of the role of protein in nanoparticle stabilization
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8979216/
https://www.ncbi.nlm.nih.gov/pubmed/35425239
http://dx.doi.org/10.1039/d1ra08396a
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