Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity

Wenzhen Liao,1 Rong Zhang,1 Chenbo Dong,2 Zhiqiang Yu,3 Jiaoyan Ren11College of Light Industry and Food Sciences, South China University of Technology, Guangzhou, Guangdong, People’s Republic of China; 2Civil and Environmental Engineering, Rice University, Houston, TX, USA; 3School of Phar...

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Main Authors: Liao W, Zhang R, Dong C, Yu Z, Ren J
Format: Article
Language:English
Published: Dove Medical Press 2016-04-01
Series:International Journal of Nanomedicine
Subjects:
Online Access:https://www.dovepress.com/novel-walnut-peptidendashselenium-hybrids-with-enhanced-anticancer-syn-peer-reviewed-article-IJN
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spelling doaj-40f41f4f10b14e01b6b65d654701b1c22020-11-24T22:04:18ZengDove Medical PressInternational Journal of Nanomedicine1178-20132016-04-012016default1305132126425Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activityLiao WZhang RDong CYu ZRen JWenzhen Liao,1 Rong Zhang,1 Chenbo Dong,2 Zhiqiang Yu,3 Jiaoyan Ren11College of Light Industry and Food Sciences, South China University of Technology, Guangzhou, Guangdong, People’s Republic of China; 2Civil and Environmental Engineering, Rice University, Houston, TX, USA; 3School of Pharmaceutical Science, Guangdong Provincial Key Laboratory of New Drug Screening, Southern Medical University, Guangzhou, Guangdong, People’s Republic of ChinaAbstract: This contribution reports a facile synthesis of degreased walnut peptides (WP1)-functionalized selenium nanoparticles (SeNPs) hybrids with enhanced anticancer activity and a detailed mechanistic evaluation of its superior anticancer activity. Structural and chemical characterizations proved that SeNPs are effectively capped with WP1 via physical absorption, resulting in a stable hybrid structure with an average diameter of 89.22 nm. A panel of selected human cancer cell lines demonstrated high susceptibility toward WP1-SeNPs and displayed significantly reduced proliferative behavior. The as-synthesized WP1-SeNPs exhibited excellent selectivity between cancer cells and normal cells. The targeted induction of apoptosis in human breast adenocarcinoma cells (MCF-7) was confirmed by the accumulation of arrested S-phase cells, nuclear condensation, and DNA breakage. Careful investigations revealed that an extrinsic apoptotic pathway can be attributed to the cell apoptosis and the same was confirmed by activation of the Fas-associated with death domain protein and caspases 3, 8, and 9. In addition, it was also understood that intrinsic apoptotic pathways including reactive oxygen species generation, as well as the reduction in mitochondrial membrane potential, are also involved in the WP1-SeNP-induced apoptosis. This suggested the involvement of multiple apoptosis pathways in the anticancer activity. Our results indicated that WP1-SeNP hybrids with Se core encapsulated in a WP1 shell could be a highly effective method to achieve anticancer synergism. Moreover, the great potential exhibited by WP1-SeNPs could make them an ideal candidate as a chemotherapeutic agent for human cancers, especially for breast cancer.Keywords: selenium nanoparticles, walnut peptides, human cancer cell lines, antiproliferative activity, apoptosishttps://www.dovepress.com/novel-walnut-peptidendashselenium-hybrids-with-enhanced-anticancer-syn-peer-reviewed-article-IJNSelenium nanoparticlesWalnut peptidesHuman cancer cell linesAntiproliferative activityApoptosis
collection DOAJ
language English
format Article
sources DOAJ
author Liao W
Zhang R
Dong C
Yu Z
Ren J
spellingShingle Liao W
Zhang R
Dong C
Yu Z
Ren J
Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
International Journal of Nanomedicine
Selenium nanoparticles
Walnut peptides
Human cancer cell lines
Antiproliferative activity
Apoptosis
author_facet Liao W
Zhang R
Dong C
Yu Z
Ren J
author_sort Liao W
title Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
title_short Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
title_full Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
title_fullStr Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
title_full_unstemmed Novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
title_sort novel walnut peptide–selenium hybrids with enhanced anticancer synergism: facile synthesis and mechanistic investigation of anticancer activity
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1178-2013
publishDate 2016-04-01
description Wenzhen Liao,1 Rong Zhang,1 Chenbo Dong,2 Zhiqiang Yu,3 Jiaoyan Ren11College of Light Industry and Food Sciences, South China University of Technology, Guangzhou, Guangdong, People’s Republic of China; 2Civil and Environmental Engineering, Rice University, Houston, TX, USA; 3School of Pharmaceutical Science, Guangdong Provincial Key Laboratory of New Drug Screening, Southern Medical University, Guangzhou, Guangdong, People’s Republic of ChinaAbstract: This contribution reports a facile synthesis of degreased walnut peptides (WP1)-functionalized selenium nanoparticles (SeNPs) hybrids with enhanced anticancer activity and a detailed mechanistic evaluation of its superior anticancer activity. Structural and chemical characterizations proved that SeNPs are effectively capped with WP1 via physical absorption, resulting in a stable hybrid structure with an average diameter of 89.22 nm. A panel of selected human cancer cell lines demonstrated high susceptibility toward WP1-SeNPs and displayed significantly reduced proliferative behavior. The as-synthesized WP1-SeNPs exhibited excellent selectivity between cancer cells and normal cells. The targeted induction of apoptosis in human breast adenocarcinoma cells (MCF-7) was confirmed by the accumulation of arrested S-phase cells, nuclear condensation, and DNA breakage. Careful investigations revealed that an extrinsic apoptotic pathway can be attributed to the cell apoptosis and the same was confirmed by activation of the Fas-associated with death domain protein and caspases 3, 8, and 9. In addition, it was also understood that intrinsic apoptotic pathways including reactive oxygen species generation, as well as the reduction in mitochondrial membrane potential, are also involved in the WP1-SeNP-induced apoptosis. This suggested the involvement of multiple apoptosis pathways in the anticancer activity. Our results indicated that WP1-SeNP hybrids with Se core encapsulated in a WP1 shell could be a highly effective method to achieve anticancer synergism. Moreover, the great potential exhibited by WP1-SeNPs could make them an ideal candidate as a chemotherapeutic agent for human cancers, especially for breast cancer.Keywords: selenium nanoparticles, walnut peptides, human cancer cell lines, antiproliferative activity, apoptosis
topic Selenium nanoparticles
Walnut peptides
Human cancer cell lines
Antiproliferative activity
Apoptosis
url https://www.dovepress.com/novel-walnut-peptidendashselenium-hybrids-with-enhanced-anticancer-syn-peer-reviewed-article-IJN
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