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Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity

Green nanotechnology has acquired immense demand due to its cost-effective, eco-friendly and benevolent approach for the synthesis of nanoparticles. Among the biological methods, plants aid as a significant green resource for synthesizing nanoparticles that are safe and non-toxic for human use. In t...

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Autores principales: Uma Maheshwari Nallal, V., Prabha, K., VethaPotheher, I., Ravindran, Balasubramani, Baazeem, Alaa, Chang, Soon Woong, Otunola, Gloria Aderonke, Razia, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8241886/
https://www.ncbi.nlm.nih.gov/pubmed/34220216
http://dx.doi.org/10.1016/j.sjbs.2021.05.001
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author Uma Maheshwari Nallal, V.
Prabha, K.
VethaPotheher, I.
Ravindran, Balasubramani
Baazeem, Alaa
Chang, Soon Woong
Otunola, Gloria Aderonke
Razia, M.
author_facet Uma Maheshwari Nallal, V.
Prabha, K.
VethaPotheher, I.
Ravindran, Balasubramani
Baazeem, Alaa
Chang, Soon Woong
Otunola, Gloria Aderonke
Razia, M.
author_sort Uma Maheshwari Nallal, V.
collection PubMed
description Green nanotechnology has acquired immense demand due to its cost-effective, eco-friendly and benevolent approach for the synthesis of nanoparticles. Among the biological methods, plants aid as a significant green resource for synthesizing nanoparticles that are safe and non-toxic for human use. In the present investigation, Silver nanoparticles (AgNPs) were synthesized using bulbs extract of Allium ampeloprasum under the influence of sunlight irradiation and characterized using different techniques. Distinct in-vitro assays were performed to test the antioxidant and anticandida potential of the synthesized AgNPs. Results suggested the efficient and rapid sunlight-driven synthesis of AgNPs using A. ampeloprasum extract. UV–Vis spectrum showed absorption peak at 446 nm which confirmed the formation of AgNPs. FTIR analysis suggested the presence of functional groups associated with flavonoids and sulfur compounds in A. ampeloprasum extract. The synthesized AgNPs showed Face Centred Cubic (FCC) structure with an average size of 35 nm. Spherical, quasi spherical, triangular and ellipsoidal morphology of the NPs were observed from the TEM micrograph. The synthesized AgNPs showed pronounced free radical scavenging potential for DPPH, ABTS∙+ and H(2)O(2) radicals. The anticandida potency of the synthesized AgNPs was observed as follows: C. albicans ≥ C. tropicalis ≥ C. glabrata ≥ C. parapsilosis ≥ C. krusei. Results showed that sunlight driven nanoparticle synthesis of AgNPs is rapid, facile and exhibit enhanced antioxidant and antifungal activity.
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spelling pubmed-82418862021-07-02 Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity Uma Maheshwari Nallal, V. Prabha, K. VethaPotheher, I. Ravindran, Balasubramani Baazeem, Alaa Chang, Soon Woong Otunola, Gloria Aderonke Razia, M. Saudi J Biol Sci Original Article Green nanotechnology has acquired immense demand due to its cost-effective, eco-friendly and benevolent approach for the synthesis of nanoparticles. Among the biological methods, plants aid as a significant green resource for synthesizing nanoparticles that are safe and non-toxic for human use. In the present investigation, Silver nanoparticles (AgNPs) were synthesized using bulbs extract of Allium ampeloprasum under the influence of sunlight irradiation and characterized using different techniques. Distinct in-vitro assays were performed to test the antioxidant and anticandida potential of the synthesized AgNPs. Results suggested the efficient and rapid sunlight-driven synthesis of AgNPs using A. ampeloprasum extract. UV–Vis spectrum showed absorption peak at 446 nm which confirmed the formation of AgNPs. FTIR analysis suggested the presence of functional groups associated with flavonoids and sulfur compounds in A. ampeloprasum extract. The synthesized AgNPs showed Face Centred Cubic (FCC) structure with an average size of 35 nm. Spherical, quasi spherical, triangular and ellipsoidal morphology of the NPs were observed from the TEM micrograph. The synthesized AgNPs showed pronounced free radical scavenging potential for DPPH, ABTS∙+ and H(2)O(2) radicals. The anticandida potency of the synthesized AgNPs was observed as follows: C. albicans ≥ C. tropicalis ≥ C. glabrata ≥ C. parapsilosis ≥ C. krusei. Results showed that sunlight driven nanoparticle synthesis of AgNPs is rapid, facile and exhibit enhanced antioxidant and antifungal activity. Elsevier 2021-07 2021-05-13 /pmc/articles/PMC8241886/ /pubmed/34220216 http://dx.doi.org/10.1016/j.sjbs.2021.05.001 Text en © 2021 The Author(s) https://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 Original Article
Uma Maheshwari Nallal, V.
Prabha, K.
VethaPotheher, I.
Ravindran, Balasubramani
Baazeem, Alaa
Chang, Soon Woong
Otunola, Gloria Aderonke
Razia, M.
Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity
title Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity
title_full Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity
title_fullStr Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity
title_full_unstemmed Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity
title_short Sunlight-driven rapid and facile synthesis of Silver nanoparticles using Allium ampeloprasum extract with enhanced antioxidant and antifungal activity
title_sort sunlight-driven rapid and facile synthesis of silver nanoparticles using allium ampeloprasum extract with enhanced antioxidant and antifungal activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8241886/
https://www.ncbi.nlm.nih.gov/pubmed/34220216
http://dx.doi.org/10.1016/j.sjbs.2021.05.001
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