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Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant

So far, several studies have focused on the synthesis of metallic nanoparticles making use of extracts from the fruit of the plants from the genus Capsicum. However, as the fruit is the edible, and highly commercial, part of the plant, in this work we focused on the leaves, a part of the plant that...

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Autores principales: Lomelí-Rosales, Diego Alberto, Zamudio-Ojeda, Adalberto, Reyes-Maldonado, Oscar Kevin, López-Reyes, Morelia Eunice, Basulto-Padilla, Georgina Cristina, Lopez-Naranjo, Edgar José, Zuñiga-Mayo, Víctor Manuel, Velázquez-Juárez, Gilberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8911899/
https://www.ncbi.nlm.nih.gov/pubmed/35268794
http://dx.doi.org/10.3390/molecules27051692
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author Lomelí-Rosales, Diego Alberto
Zamudio-Ojeda, Adalberto
Reyes-Maldonado, Oscar Kevin
López-Reyes, Morelia Eunice
Basulto-Padilla, Georgina Cristina
Lopez-Naranjo, Edgar José
Zuñiga-Mayo, Víctor Manuel
Velázquez-Juárez, Gilberto
author_facet Lomelí-Rosales, Diego Alberto
Zamudio-Ojeda, Adalberto
Reyes-Maldonado, Oscar Kevin
López-Reyes, Morelia Eunice
Basulto-Padilla, Georgina Cristina
Lopez-Naranjo, Edgar José
Zuñiga-Mayo, Víctor Manuel
Velázquez-Juárez, Gilberto
author_sort Lomelí-Rosales, Diego Alberto
collection PubMed
description So far, several studies have focused on the synthesis of metallic nanoparticles making use of extracts from the fruit of the plants from the genus Capsicum. However, as the fruit is the edible, and highly commercial, part of the plant, in this work we focused on the leaves, a part of the plant that is considered agro-industrial waste. The biological synthesis of gold (AuNPs) and silver (AgNPs) nanoparticles using aqueous extracts of root, stem and leaf of Capsicum chinense was evaluated, obtaining the best results with the leaf extract. Gold and silver nanoparticles synthesized using leaf extract (AuNPs-leaf and AgNPs-leaf, respectively) were characterized by UV-visible spectrophotometry (UV-Vis), Fourier Transform Infrared Spectroscopy with Attenuated Total Reflection (FTIR-ATR), X-ray Photoelectron Spectroscopy (XPS), Ultra Hight Resolution Scanning Electron Microscopy coupled to Energy-Dispersive X-ray spectroscopy (UHR-SEM-EDX) and Transmission Electron Microscopy (TEM), and tested for their antioxidant and antimicrobial activities. In addition, different metabolites involved in the synthesis of nanoparticles were analyzed. We found that by the use of extracts derived from the leaf, we could generate stable and easy to synthesize AuNPs and AgNPs. The AuNPs-leaf were synthesized using microwave radiation, while the AgNPs-leaf were synthesized using UV light radiation. The antioxidant activity of the extract, determined by ABTS, showed a decrease of 44.7% and 60.7% after the synthesis of the AuNPs-leaf and AgNPs-leaf, respectively. After the AgNPs-leaf synthesis, the concentration of polyphenols, reducing sugars and amino acids decreased by 15.4%, 38.7% and 46.8% in the leaf extract, respectively, while after the AuNPs-leaf synthesis only reducing sugars decreased by 67.7%. These results suggest that these groups of molecules are implicated in the reduction/stabilization of the nanoparticles. Although the contribution of these compounds in the synthesis of the AuNPs-leaf and the AgNPs-leaf was different. Finally, the AgNPs-leaf inhibited the growth of S. aureus, E. coli, S. marcescens and E. faecalis. All of them are bacterial strains of clinical importance due to their fast antibiotic resistance development.
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spelling pubmed-89118992022-03-11 Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant Lomelí-Rosales, Diego Alberto Zamudio-Ojeda, Adalberto Reyes-Maldonado, Oscar Kevin López-Reyes, Morelia Eunice Basulto-Padilla, Georgina Cristina Lopez-Naranjo, Edgar José Zuñiga-Mayo, Víctor Manuel Velázquez-Juárez, Gilberto Molecules Article So far, several studies have focused on the synthesis of metallic nanoparticles making use of extracts from the fruit of the plants from the genus Capsicum. However, as the fruit is the edible, and highly commercial, part of the plant, in this work we focused on the leaves, a part of the plant that is considered agro-industrial waste. The biological synthesis of gold (AuNPs) and silver (AgNPs) nanoparticles using aqueous extracts of root, stem and leaf of Capsicum chinense was evaluated, obtaining the best results with the leaf extract. Gold and silver nanoparticles synthesized using leaf extract (AuNPs-leaf and AgNPs-leaf, respectively) were characterized by UV-visible spectrophotometry (UV-Vis), Fourier Transform Infrared Spectroscopy with Attenuated Total Reflection (FTIR-ATR), X-ray Photoelectron Spectroscopy (XPS), Ultra Hight Resolution Scanning Electron Microscopy coupled to Energy-Dispersive X-ray spectroscopy (UHR-SEM-EDX) and Transmission Electron Microscopy (TEM), and tested for their antioxidant and antimicrobial activities. In addition, different metabolites involved in the synthesis of nanoparticles were analyzed. We found that by the use of extracts derived from the leaf, we could generate stable and easy to synthesize AuNPs and AgNPs. The AuNPs-leaf were synthesized using microwave radiation, while the AgNPs-leaf were synthesized using UV light radiation. The antioxidant activity of the extract, determined by ABTS, showed a decrease of 44.7% and 60.7% after the synthesis of the AuNPs-leaf and AgNPs-leaf, respectively. After the AgNPs-leaf synthesis, the concentration of polyphenols, reducing sugars and amino acids decreased by 15.4%, 38.7% and 46.8% in the leaf extract, respectively, while after the AuNPs-leaf synthesis only reducing sugars decreased by 67.7%. These results suggest that these groups of molecules are implicated in the reduction/stabilization of the nanoparticles. Although the contribution of these compounds in the synthesis of the AuNPs-leaf and the AgNPs-leaf was different. Finally, the AgNPs-leaf inhibited the growth of S. aureus, E. coli, S. marcescens and E. faecalis. All of them are bacterial strains of clinical importance due to their fast antibiotic resistance development. MDPI 2022-03-04 /pmc/articles/PMC8911899/ /pubmed/35268794 http://dx.doi.org/10.3390/molecules27051692 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lomelí-Rosales, Diego Alberto
Zamudio-Ojeda, Adalberto
Reyes-Maldonado, Oscar Kevin
López-Reyes, Morelia Eunice
Basulto-Padilla, Georgina Cristina
Lopez-Naranjo, Edgar José
Zuñiga-Mayo, Víctor Manuel
Velázquez-Juárez, Gilberto
Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant
title Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant
title_full Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant
title_fullStr Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant
title_full_unstemmed Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant
title_short Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant
title_sort green synthesis of gold and silver nanoparticles using leaf extract of capsicum chinense plant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8911899/
https://www.ncbi.nlm.nih.gov/pubmed/35268794
http://dx.doi.org/10.3390/molecules27051692
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