Cargando…

Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell

BACKGROUND: Functionalized gold nanoparticles are emerging as a promising nanocarrier for target specific delivery of the therapeutic molecules in a cancer cell, as a result it targeted selectively to the cancer cell and minimized the off-target effect. The functionalized nanomaterial (bio conjugate...

Descripción completa

Detalles Bibliográficos
Autores principales: Kalmodia, Sushma, Vandhana, Suryanarayanan, Tejaswini Rama, B. R., Jayashree, Balasubramanyam, Sreenivasan Seethalakshmi, T., Umashankar, Vetrivel, Yang, Wenrong, Barrow, Colin J., Krishnakumar, Subramanian, Elchuri, Sailaja V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Vienna 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747989/
https://www.ncbi.nlm.nih.gov/pubmed/26900409
http://dx.doi.org/10.1186/s12645-016-0013-x
_version_ 1782415042938929152
author Kalmodia, Sushma
Vandhana, Suryanarayanan
Tejaswini Rama, B. R.
Jayashree, Balasubramanyam
Sreenivasan Seethalakshmi, T.
Umashankar, Vetrivel
Yang, Wenrong
Barrow, Colin J.
Krishnakumar, Subramanian
Elchuri, Sailaja V.
author_facet Kalmodia, Sushma
Vandhana, Suryanarayanan
Tejaswini Rama, B. R.
Jayashree, Balasubramanyam
Sreenivasan Seethalakshmi, T.
Umashankar, Vetrivel
Yang, Wenrong
Barrow, Colin J.
Krishnakumar, Subramanian
Elchuri, Sailaja V.
author_sort Kalmodia, Sushma
collection PubMed
description BACKGROUND: Functionalized gold nanoparticles are emerging as a promising nanocarrier for target specific delivery of the therapeutic molecules in a cancer cell, as a result it targeted selectively to the cancer cell and minimized the off-target effect. The functionalized nanomaterial (bio conjugate) brings novel functional properties, for example, the high payload of anticancer, antioxidant molecules and selective targeting of the cancer molecular markers. The current study reported the synthesis of multifunctional bioconjugate (GNPs-Pep-A) to target the cancer cell. METHODS: The GNPs-Pep-A conjugate was prepared by functionalization of GNPs with peptide-A (Pro-His-Cys-Lys-Arg-Met; Pep-A) using thioctic acid as a linker molecule. The GNPs-Pep-A was characterized and functional efficacy was tested using Retinoblastoma (RB) cancer model in vitro. RESULTS: The GNPs-Pep-A target the reactive oxygen species (ROS) in RB, Y79, cancer cell more effectively, and bring down the ROS up to 70 % relative to control (untreated cells) in vitro. On the other hand, Pep-A and GNPs showed 40 and 9 % reductions in ROS, respectively, compared to control. The effectiveness of bioconjugate indicates the synergistic effect, due to the coexistence of both organic (Pep-A) and inorganic phase (GNPs) in novel GNPs-Pep-A functional material. In addition to this, it modulates the mRNA expression of antioxidant genes glutathione peroxidase (GPX), superoxide dismutase (SOD) and catalase (CAT) by two–threefolds as observed. CONCLUSIONS: The effects of GNPs-Pep-A on ROS reduction and regulation of antioxidant genes confirmed that Vitis vinifera L. polyphenol-coated GNPs synergistically improve the radical scavenging properties and enhanced the apoptosis of cancer cell.
format Online
Article
Text
id pubmed-4747989
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Springer Vienna
record_format MEDLINE/PubMed
spelling pubmed-47479892016-02-19 Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell Kalmodia, Sushma Vandhana, Suryanarayanan Tejaswini Rama, B. R. Jayashree, Balasubramanyam Sreenivasan Seethalakshmi, T. Umashankar, Vetrivel Yang, Wenrong Barrow, Colin J. Krishnakumar, Subramanian Elchuri, Sailaja V. Cancer Nanotechnol Research BACKGROUND: Functionalized gold nanoparticles are emerging as a promising nanocarrier for target specific delivery of the therapeutic molecules in a cancer cell, as a result it targeted selectively to the cancer cell and minimized the off-target effect. The functionalized nanomaterial (bio conjugate) brings novel functional properties, for example, the high payload of anticancer, antioxidant molecules and selective targeting of the cancer molecular markers. The current study reported the synthesis of multifunctional bioconjugate (GNPs-Pep-A) to target the cancer cell. METHODS: The GNPs-Pep-A conjugate was prepared by functionalization of GNPs with peptide-A (Pro-His-Cys-Lys-Arg-Met; Pep-A) using thioctic acid as a linker molecule. The GNPs-Pep-A was characterized and functional efficacy was tested using Retinoblastoma (RB) cancer model in vitro. RESULTS: The GNPs-Pep-A target the reactive oxygen species (ROS) in RB, Y79, cancer cell more effectively, and bring down the ROS up to 70 % relative to control (untreated cells) in vitro. On the other hand, Pep-A and GNPs showed 40 and 9 % reductions in ROS, respectively, compared to control. The effectiveness of bioconjugate indicates the synergistic effect, due to the coexistence of both organic (Pep-A) and inorganic phase (GNPs) in novel GNPs-Pep-A functional material. In addition to this, it modulates the mRNA expression of antioxidant genes glutathione peroxidase (GPX), superoxide dismutase (SOD) and catalase (CAT) by two–threefolds as observed. CONCLUSIONS: The effects of GNPs-Pep-A on ROS reduction and regulation of antioxidant genes confirmed that Vitis vinifera L. polyphenol-coated GNPs synergistically improve the radical scavenging properties and enhanced the apoptosis of cancer cell. Springer Vienna 2016-02-09 2016 /pmc/articles/PMC4747989/ /pubmed/26900409 http://dx.doi.org/10.1186/s12645-016-0013-x Text en © Kalmodia et al. 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Research
Kalmodia, Sushma
Vandhana, Suryanarayanan
Tejaswini Rama, B. R.
Jayashree, Balasubramanyam
Sreenivasan Seethalakshmi, T.
Umashankar, Vetrivel
Yang, Wenrong
Barrow, Colin J.
Krishnakumar, Subramanian
Elchuri, Sailaja V.
Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
title Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
title_full Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
title_fullStr Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
title_full_unstemmed Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
title_short Bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
title_sort bio-conjugation of antioxidant peptide on surface-modified gold nanoparticles: a novel approach to enhance the radical scavenging property in cancer cell
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747989/
https://www.ncbi.nlm.nih.gov/pubmed/26900409
http://dx.doi.org/10.1186/s12645-016-0013-x
work_keys_str_mv AT kalmodiasushma bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT vandhanasuryanarayanan bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT tejaswiniramabr bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT jayashreebalasubramanyam bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT sreenivasanseethalakshmit bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT umashankarvetrivel bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT yangwenrong bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT barrowcolinj bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT krishnakumarsubramanian bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell
AT elchurisailajav bioconjugationofantioxidantpeptideonsurfacemodifiedgoldnanoparticlesanovelapproachtoenhancetheradicalscavengingpropertyincancercell