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Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities

Medicinal plants serve as rich sources of diverse bioactive phytochemicals that might even take part in bioreduction and stabilization of phytogenic nanoparticles with immense therapeutic properties. Herein, we report for the first time the rapid efficient synthesis of novel platinum–palladium bimet...

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Autores principales: Ghosh, Sougata, Nitnavare, Rahul, Dewle, Ankush, Tomar, Geetanjali B, Chippalkatti, Rohan, More, Piyush, Kitture, Rohini, Kale, Sangeeta, Bellare, Jayesh, Chopade, Balu A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4687724/
https://www.ncbi.nlm.nih.gov/pubmed/26719690
http://dx.doi.org/10.2147/IJN.S91579
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author Ghosh, Sougata
Nitnavare, Rahul
Dewle, Ankush
Tomar, Geetanjali B
Chippalkatti, Rohan
More, Piyush
Kitture, Rohini
Kale, Sangeeta
Bellare, Jayesh
Chopade, Balu A
author_facet Ghosh, Sougata
Nitnavare, Rahul
Dewle, Ankush
Tomar, Geetanjali B
Chippalkatti, Rohan
More, Piyush
Kitture, Rohini
Kale, Sangeeta
Bellare, Jayesh
Chopade, Balu A
author_sort Ghosh, Sougata
collection PubMed
description Medicinal plants serve as rich sources of diverse bioactive phytochemicals that might even take part in bioreduction and stabilization of phytogenic nanoparticles with immense therapeutic properties. Herein, we report for the first time the rapid efficient synthesis of novel platinum–palladium bimetallic nanoparticles (Pt–PdNPs) along with individual platinum (PtNPs) and palladium (PdNPs) nanoparticles using a medicinal plant, Dioscorea bulbifera tuber extract (DBTE). High-resolution transmission electron microscopy revealed monodispersed PtNPs of size 2–5 nm, while PdNPs and Pt–PdNPs between 10 and 25 nm. Energy dispersive spectroscopy analysis confirmed 30.88%±1.73% elemental Pt and 68.96%±1.48% elemental Pd in the bimetallic nanoparticles. Fourier transform infrared spectra indicated strong peaks at 3,373 cm(−1), attributed to hydroxyl group of polyphenolic compounds in DBTE that might play a key role in bioreduction in addition to the sharp peaks at 2,937, 1,647, 1,518, and 1,024 cm(−1), associated with C–H stretching, N–H bending in primary amines, N–O stretching in nitro group, and C–C stretch, respectively. Anticancer activity against HeLa cells showed that Pt–PdNPs exhibited more pronounced cell death of 74.25% compared to individual PtNPs (12.6%) or PdNPs (33.15%). Further, Pt–PdNPs showed an enhanced scavenging activity against 2,2-diphenyl-1-picrylhydrazyl, superoxide, nitric oxide, and hydroxyl radicals.
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spelling pubmed-46877242015-12-30 Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities Ghosh, Sougata Nitnavare, Rahul Dewle, Ankush Tomar, Geetanjali B Chippalkatti, Rohan More, Piyush Kitture, Rohini Kale, Sangeeta Bellare, Jayesh Chopade, Balu A Int J Nanomedicine Original Research Medicinal plants serve as rich sources of diverse bioactive phytochemicals that might even take part in bioreduction and stabilization of phytogenic nanoparticles with immense therapeutic properties. Herein, we report for the first time the rapid efficient synthesis of novel platinum–palladium bimetallic nanoparticles (Pt–PdNPs) along with individual platinum (PtNPs) and palladium (PdNPs) nanoparticles using a medicinal plant, Dioscorea bulbifera tuber extract (DBTE). High-resolution transmission electron microscopy revealed monodispersed PtNPs of size 2–5 nm, while PdNPs and Pt–PdNPs between 10 and 25 nm. Energy dispersive spectroscopy analysis confirmed 30.88%±1.73% elemental Pt and 68.96%±1.48% elemental Pd in the bimetallic nanoparticles. Fourier transform infrared spectra indicated strong peaks at 3,373 cm(−1), attributed to hydroxyl group of polyphenolic compounds in DBTE that might play a key role in bioreduction in addition to the sharp peaks at 2,937, 1,647, 1,518, and 1,024 cm(−1), associated with C–H stretching, N–H bending in primary amines, N–O stretching in nitro group, and C–C stretch, respectively. Anticancer activity against HeLa cells showed that Pt–PdNPs exhibited more pronounced cell death of 74.25% compared to individual PtNPs (12.6%) or PdNPs (33.15%). Further, Pt–PdNPs showed an enhanced scavenging activity against 2,2-diphenyl-1-picrylhydrazyl, superoxide, nitric oxide, and hydroxyl radicals. Dove Medical Press 2015-12-17 /pmc/articles/PMC4687724/ /pubmed/26719690 http://dx.doi.org/10.2147/IJN.S91579 Text en © 2015 Ghosh et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Ghosh, Sougata
Nitnavare, Rahul
Dewle, Ankush
Tomar, Geetanjali B
Chippalkatti, Rohan
More, Piyush
Kitture, Rohini
Kale, Sangeeta
Bellare, Jayesh
Chopade, Balu A
Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities
title Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities
title_full Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities
title_fullStr Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities
title_full_unstemmed Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities
title_short Novel platinum–palladium bimetallic nanoparticles synthesized by Dioscorea bulbifera: anticancer and antioxidant activities
title_sort novel platinum–palladium bimetallic nanoparticles synthesized by dioscorea bulbifera: anticancer and antioxidant activities
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4687724/
https://www.ncbi.nlm.nih.gov/pubmed/26719690
http://dx.doi.org/10.2147/IJN.S91579
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