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Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon

Hypermethylation of the transcription factor AP-2 epsilon (TFAP2E) gene affects 5-fluorouridine (5-FU) resistance in gastric cancer (GC) patients. The epigenetic inhibitor 5-Aza-2′-deoxycytidine (DAC), which reverses DNA methylation by targeting DNA methyltransferases (DNMTs), has potential to sensi...

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Autores principales: Hong, Yi-Dong, Zhang, Jian, Zhuang, Ming, Li, Wei, Wu, Puy-Uan, Li, Ru-Tian, Hu, Nan, Bian, Bao-Xiang, Song, Zi-Yan, Wu, Feng-Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777709/
https://www.ncbi.nlm.nih.gov/pubmed/29383097
http://dx.doi.org/10.18632/oncotarget.21274
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author Hong, Yi-Dong
Zhang, Jian
Zhuang, Ming
Li, Wei
Wu, Puy-Uan
Li, Ru-Tian
Hu, Nan
Bian, Bao-Xiang
Song, Zi-Yan
Wu, Feng-Lei
author_facet Hong, Yi-Dong
Zhang, Jian
Zhuang, Ming
Li, Wei
Wu, Puy-Uan
Li, Ru-Tian
Hu, Nan
Bian, Bao-Xiang
Song, Zi-Yan
Wu, Feng-Lei
author_sort Hong, Yi-Dong
collection PubMed
description Hypermethylation of the transcription factor AP-2 epsilon (TFAP2E) gene affects 5-fluorouridine (5-FU) resistance in gastric cancer (GC) patients. The epigenetic inhibitor 5-Aza-2′-deoxycytidine (DAC), which reverses DNA methylation by targeting DNA methyltransferases (DNMTs), has potential to sensitize GC to 5-FU. Nevertheless, DNA demethylation only DAC transiently occurs since DAC is unstable in aqueous solutions, which limits its potential. Here we developed intelligent nanoparticles (NPs) comprising gelatinase with polyethylene glycol (PEG) and poly-ε-caprolactone) (PCL) to specifically deliver DAC (DAC-TNPs) to tumors. DAC-carrying PEG-PCL NPs (DAC-NPs) lacking gelatinase features served as controls. 72 hours after administration of DAC-TNPs or DAC-NPs, 5-FU was sequentially applied to GC cells and human GC xenografts in nude mice. Both in vitro and in vivo evaluations demonstrated that the combination treatment of DAC-TNPs and 5-FU greatly improved tumor suppression in GC cells and mouse xenograft models with hypermethylation TFAP2E (MKN45 cells). We thus propose that the sequential administration of DAC-TNPs and 5-FU could be significant in the development of novel targeted therapies.
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spelling pubmed-57777092018-01-30 Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon Hong, Yi-Dong Zhang, Jian Zhuang, Ming Li, Wei Wu, Puy-Uan Li, Ru-Tian Hu, Nan Bian, Bao-Xiang Song, Zi-Yan Wu, Feng-Lei Oncotarget Research Paper Hypermethylation of the transcription factor AP-2 epsilon (TFAP2E) gene affects 5-fluorouridine (5-FU) resistance in gastric cancer (GC) patients. The epigenetic inhibitor 5-Aza-2′-deoxycytidine (DAC), which reverses DNA methylation by targeting DNA methyltransferases (DNMTs), has potential to sensitize GC to 5-FU. Nevertheless, DNA demethylation only DAC transiently occurs since DAC is unstable in aqueous solutions, which limits its potential. Here we developed intelligent nanoparticles (NPs) comprising gelatinase with polyethylene glycol (PEG) and poly-ε-caprolactone) (PCL) to specifically deliver DAC (DAC-TNPs) to tumors. DAC-carrying PEG-PCL NPs (DAC-NPs) lacking gelatinase features served as controls. 72 hours after administration of DAC-TNPs or DAC-NPs, 5-FU was sequentially applied to GC cells and human GC xenografts in nude mice. Both in vitro and in vivo evaluations demonstrated that the combination treatment of DAC-TNPs and 5-FU greatly improved tumor suppression in GC cells and mouse xenograft models with hypermethylation TFAP2E (MKN45 cells). We thus propose that the sequential administration of DAC-TNPs and 5-FU could be significant in the development of novel targeted therapies. Impact Journals LLC 2017-09-26 /pmc/articles/PMC5777709/ /pubmed/29383097 http://dx.doi.org/10.18632/oncotarget.21274 Text en Copyright: © 2017 Hong et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Hong, Yi-Dong
Zhang, Jian
Zhuang, Ming
Li, Wei
Wu, Puy-Uan
Li, Ru-Tian
Hu, Nan
Bian, Bao-Xiang
Song, Zi-Yan
Wu, Feng-Lei
Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon
title Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon
title_full Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon
title_fullStr Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon
title_full_unstemmed Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon
title_short Efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor AP-2 epsilon
title_sort efficacy of decitabine-loaded gelatinases-stimuli nanoparticles in overcoming cancer drug resistance is mediated via its enhanced demethylating activity to transcription factor ap-2 epsilon
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777709/
https://www.ncbi.nlm.nih.gov/pubmed/29383097
http://dx.doi.org/10.18632/oncotarget.21274
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