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Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions

[Image: see text] We report synthesis of monodispersed, stable, and colloidal gold nanoparticles (Au NPs) using anthocyanin-riched red raspberry (Rubus idaeus), strawberry (Fragaria ananassa), and blackberry (Rubus fruticosus) extracts as functions of concentration of HAuCl(4)·3H(2)O and berries ext...

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Autores principales: Demirbas, Ayse, Büyükbezirci, Kasım, Celik, Cagla, Kislakci, Emine, Karaagac, Zehra, Gokturk, Ersen, Kati, Ahmet, Cimen, Behzat, Yilmaz, Vedat, Ocsoy, Ismail
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854581/
https://www.ncbi.nlm.nih.gov/pubmed/31737823
http://dx.doi.org/10.1021/acsomega.9b02469
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author Demirbas, Ayse
Büyükbezirci, Kasım
Celik, Cagla
Kislakci, Emine
Karaagac, Zehra
Gokturk, Ersen
Kati, Ahmet
Cimen, Behzat
Yilmaz, Vedat
Ocsoy, Ismail
author_facet Demirbas, Ayse
Büyükbezirci, Kasım
Celik, Cagla
Kislakci, Emine
Karaagac, Zehra
Gokturk, Ersen
Kati, Ahmet
Cimen, Behzat
Yilmaz, Vedat
Ocsoy, Ismail
author_sort Demirbas, Ayse
collection PubMed
description [Image: see text] We report synthesis of monodispersed, stable, and colloidal gold nanoparticles (Au NPs) using anthocyanin-riched red raspberry (Rubus idaeus), strawberry (Fragaria ananassa), and blackberry (Rubus fruticosus) extracts as functions of concentration of HAuCl(4)·3H(2)O and berries extract, reaction time, and reaction pH values (pHs) and demonstrate their unique stability in highly concentrated salt (sodium chloride, NaCl) solutions. The catecholamine group of anthocyanin molecules give preferential coordination reaction with gold ions (Au(3+)) for creating anthocyanin–Au(3+) complexes, which may lead to initiation of nucleation for seed formation, and then, oxidation of catecholamine results in a flow of electrons from anthocyanins to Au seeds for anisotropic growth. Finally, the surface of the Au NPs is saturated with anthocyanins, and formation of monodispersed and stable Au NPs with narrow size distribution is completed. We also report the effects of some experimental parameters including concentrations of Au(3+) ions and barrier extracts, reaction time, and pHs on formation of the Au NPs with rational explanations. The long-term colloidal stability of the Au NPs in the 400 mM NaCl solution was comparatively studied with commercial Au NPs (citrate capped). As results show that anthocyanin-riched berry extracts directed Au NPs we proposed here can be considered as promising and safe tools for biomedical applications owing to their highly much colloidal dispersibility and salt tolerance properties.
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spelling pubmed-68545812019-11-15 Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions Demirbas, Ayse Büyükbezirci, Kasım Celik, Cagla Kislakci, Emine Karaagac, Zehra Gokturk, Ersen Kati, Ahmet Cimen, Behzat Yilmaz, Vedat Ocsoy, Ismail ACS Omega [Image: see text] We report synthesis of monodispersed, stable, and colloidal gold nanoparticles (Au NPs) using anthocyanin-riched red raspberry (Rubus idaeus), strawberry (Fragaria ananassa), and blackberry (Rubus fruticosus) extracts as functions of concentration of HAuCl(4)·3H(2)O and berries extract, reaction time, and reaction pH values (pHs) and demonstrate their unique stability in highly concentrated salt (sodium chloride, NaCl) solutions. The catecholamine group of anthocyanin molecules give preferential coordination reaction with gold ions (Au(3+)) for creating anthocyanin–Au(3+) complexes, which may lead to initiation of nucleation for seed formation, and then, oxidation of catecholamine results in a flow of electrons from anthocyanins to Au seeds for anisotropic growth. Finally, the surface of the Au NPs is saturated with anthocyanins, and formation of monodispersed and stable Au NPs with narrow size distribution is completed. We also report the effects of some experimental parameters including concentrations of Au(3+) ions and barrier extracts, reaction time, and pHs on formation of the Au NPs with rational explanations. The long-term colloidal stability of the Au NPs in the 400 mM NaCl solution was comparatively studied with commercial Au NPs (citrate capped). As results show that anthocyanin-riched berry extracts directed Au NPs we proposed here can be considered as promising and safe tools for biomedical applications owing to their highly much colloidal dispersibility and salt tolerance properties. American Chemical Society 2019-10-28 /pmc/articles/PMC6854581/ /pubmed/31737823 http://dx.doi.org/10.1021/acsomega.9b02469 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Demirbas, Ayse
Büyükbezirci, Kasım
Celik, Cagla
Kislakci, Emine
Karaagac, Zehra
Gokturk, Ersen
Kati, Ahmet
Cimen, Behzat
Yilmaz, Vedat
Ocsoy, Ismail
Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions
title Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions
title_full Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions
title_fullStr Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions
title_full_unstemmed Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions
title_short Synthesis of Long-Term Stable Gold Nanoparticles Benefiting from Red Raspberry (Rubus idaeus), Strawberry (Fragaria ananassa), and Blackberry (Rubus fruticosus) Extracts–Gold Ion Complexation and Investigation of Reaction Conditions
title_sort synthesis of long-term stable gold nanoparticles benefiting from red raspberry (rubus idaeus), strawberry (fragaria ananassa), and blackberry (rubus fruticosus) extracts–gold ion complexation and investigation of reaction conditions
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854581/
https://www.ncbi.nlm.nih.gov/pubmed/31737823
http://dx.doi.org/10.1021/acsomega.9b02469
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