Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells

Baoan Chen1*, Jian Cheng1*, Mingfang Shen1, Feng Gao1, Wenlin Xu2, et al1Department of Hematology;2Department of Hematology, The Affiliated People’s Hospital, Jiangsu University, Zhenjiang, P.R China, et al *These authors have contributed equally to this work.Abstract: Apo...

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Main Authors: Baoan Chen, Jian Cheng, Mingfang Shen, Feng Gao, Wenlin Xu, et al 
Format: Article
Language:English
Published: Dove Medical Press 2009-03-01
Series:International Journal of Nanomedicine
Online Access:http://www.dovepress.com/magnetic-nanoparticle-of-fe3o4-and-5-bromotetrandrin-interact-synergis-a2975
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spelling doaj-fb324866867145c986ebc90dc88f043f2020-11-25T01:03:23ZengDove Medical PressInternational Journal of Nanomedicine1176-91141178-20132009-03-012009default6571Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cellsBaoan ChenJian ChengMingfang ShenFeng GaoWenlin Xu, et al Baoan Chen1*, Jian Cheng1*, Mingfang Shen1, Feng Gao1, Wenlin Xu2, et al1Department of Hematology;2Department of Hematology, The Affiliated People’s Hospital, Jiangsu University, Zhenjiang, P.R China, et al *These authors have contributed equally to this work.Abstract: Apoptosis is a common pathway that finally mediated the killing functions of anticancer drugs, which is an important cause of multidrug resistance (MDR). The aim of this study was to investigate the potential benefit of combination therapy with magnetic nanoparticle of Fe3O4 (MNP(Fe3O4)) and 5-bromotetrandrin (BrTet). Analysis of the apoptosis percentage showed that combination of daunorubicin (DNR) with either MNP(Fe3O4) or BrTet exerted a potent cytotoxic effect on K562/A02 cells, while MNP(Fe3O4) and BrTet cotreatment can synergistically enhance DNR-induced apoptosis. Importantly, we confirmed that the distinct synergism effect of that composite on reverse multidrug resistance may owe to the regulation of various proliferative and antiapoptotic gene products, including P53 and caspase-3. Thus our in vitro data strongly suggests a potential clinical application of MNP(Fe3O4) and BrTet combination on CML.Keywords: K562/A02 leukemic cells, multidrug resistance, magnetic nanoparticle of Fe3O4, 5-bromotetrandrine, apoptosis, P53, caspase-3 http://www.dovepress.com/magnetic-nanoparticle-of-fe3o4-and-5-bromotetrandrin-interact-synergis-a2975
collection DOAJ
language English
format Article
sources DOAJ
author Baoan Chen
Jian Cheng
Mingfang Shen
Feng Gao
Wenlin Xu, et al 
spellingShingle Baoan Chen
Jian Cheng
Mingfang Shen
Feng Gao
Wenlin Xu, et al 
Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
International Journal of Nanomedicine
author_facet Baoan Chen
Jian Cheng
Mingfang Shen
Feng Gao
Wenlin Xu, et al 
author_sort Baoan Chen
title Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
title_short Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
title_full Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
title_fullStr Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
title_full_unstemmed Magnetic nanoparticle of Fe3O4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
title_sort magnetic nanoparticle of fe3o4 and 5-bromotetrandrin interact synergistically to induce apoptosis by daunorubicin in leukemia cells
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1176-9114
1178-2013
publishDate 2009-03-01
description Baoan Chen1*, Jian Cheng1*, Mingfang Shen1, Feng Gao1, Wenlin Xu2, et al1Department of Hematology;2Department of Hematology, The Affiliated People’s Hospital, Jiangsu University, Zhenjiang, P.R China, et al *These authors have contributed equally to this work.Abstract: Apoptosis is a common pathway that finally mediated the killing functions of anticancer drugs, which is an important cause of multidrug resistance (MDR). The aim of this study was to investigate the potential benefit of combination therapy with magnetic nanoparticle of Fe3O4 (MNP(Fe3O4)) and 5-bromotetrandrin (BrTet). Analysis of the apoptosis percentage showed that combination of daunorubicin (DNR) with either MNP(Fe3O4) or BrTet exerted a potent cytotoxic effect on K562/A02 cells, while MNP(Fe3O4) and BrTet cotreatment can synergistically enhance DNR-induced apoptosis. Importantly, we confirmed that the distinct synergism effect of that composite on reverse multidrug resistance may owe to the regulation of various proliferative and antiapoptotic gene products, including P53 and caspase-3. Thus our in vitro data strongly suggests a potential clinical application of MNP(Fe3O4) and BrTet combination on CML.Keywords: K562/A02 leukemic cells, multidrug resistance, magnetic nanoparticle of Fe3O4, 5-bromotetrandrine, apoptosis, P53, caspase-3
url http://www.dovepress.com/magnetic-nanoparticle-of-fe3o4-and-5-bromotetrandrin-interact-synergis-a2975
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