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Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation
Intravesical instillation of antitumor agents following transurethral resection of bladder tumors is the standard strategy for the treatment of superficial bladder cancers. However, the efficacy of current intravesical instillation is limited partly due to the poor permeability of the urothelium. We...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dove Medical Press
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5644558/ https://www.ncbi.nlm.nih.gov/pubmed/29066888 http://dx.doi.org/10.2147/IJN.S140111 |
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author | Qiu, Xuefeng Cao, Kai Lin, Tingsheng Chen, Wei Yuan, Ahu Wu, Jinhui Hu, Yiqiao Guo, Hongqian |
author_facet | Qiu, Xuefeng Cao, Kai Lin, Tingsheng Chen, Wei Yuan, Ahu Wu, Jinhui Hu, Yiqiao Guo, Hongqian |
author_sort | Qiu, Xuefeng |
collection | PubMed |
description | Intravesical instillation of antitumor agents following transurethral resection of bladder tumors is the standard strategy for the treatment of superficial bladder cancers. However, the efficacy of current intravesical instillation is limited partly due to the poor permeability of the urothelium. We therefore aimed to develop a high-penetrating, target-releasing drug delivery system to improve the efficacy of intravesical instillation. PAMAM, a dendrimer, were conjugated with polyethylene glycol (PEG) to form PEG-PAMAM complex as a nanocarrier. Doxorubicin (DOX) was then encapsulated into PEG-PAMAM to generate DOX-loaded PEG-PAMAM nanoparticles (PEG-PAMAM-DOX). Our results indicated that the PEG-PAMAM was a stable nanocarrier with small size and great biosafety. The release of DOX from PEG-PAMAM-DOX was sluggish but could be effectively triggered in an acid microenvironment (pH =5.0). As a drug carrier, PEG-PAMAM could penetrate mice bladder urothelium effectively and increase the amount of DOX within the bladder wall after intravesical instillation. The antitumor effect of PEG-PAMAM-DOX was evaluated using an orthotopic bladder cancer model in mice. Compared to free DOX, PEG-PAMAM-DOX showed significantly improved efficacy of DOX for intravesical instillation with limited side effects. In conclusion, we successfully developed a PEG-PAMAM-based drug delivery system to enhance the antitumor effect of intravesical instillation. |
format | Online Article Text |
id | pubmed-5644558 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Dove Medical Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-56445582017-10-24 Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation Qiu, Xuefeng Cao, Kai Lin, Tingsheng Chen, Wei Yuan, Ahu Wu, Jinhui Hu, Yiqiao Guo, Hongqian Int J Nanomedicine Original Research Intravesical instillation of antitumor agents following transurethral resection of bladder tumors is the standard strategy for the treatment of superficial bladder cancers. However, the efficacy of current intravesical instillation is limited partly due to the poor permeability of the urothelium. We therefore aimed to develop a high-penetrating, target-releasing drug delivery system to improve the efficacy of intravesical instillation. PAMAM, a dendrimer, were conjugated with polyethylene glycol (PEG) to form PEG-PAMAM complex as a nanocarrier. Doxorubicin (DOX) was then encapsulated into PEG-PAMAM to generate DOX-loaded PEG-PAMAM nanoparticles (PEG-PAMAM-DOX). Our results indicated that the PEG-PAMAM was a stable nanocarrier with small size and great biosafety. The release of DOX from PEG-PAMAM-DOX was sluggish but could be effectively triggered in an acid microenvironment (pH =5.0). As a drug carrier, PEG-PAMAM could penetrate mice bladder urothelium effectively and increase the amount of DOX within the bladder wall after intravesical instillation. The antitumor effect of PEG-PAMAM-DOX was evaluated using an orthotopic bladder cancer model in mice. Compared to free DOX, PEG-PAMAM-DOX showed significantly improved efficacy of DOX for intravesical instillation with limited side effects. In conclusion, we successfully developed a PEG-PAMAM-based drug delivery system to enhance the antitumor effect of intravesical instillation. Dove Medical Press 2017-10-10 /pmc/articles/PMC5644558/ /pubmed/29066888 http://dx.doi.org/10.2147/IJN.S140111 Text en © 2017 Qiu et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. |
spellingShingle | Original Research Qiu, Xuefeng Cao, Kai Lin, Tingsheng Chen, Wei Yuan, Ahu Wu, Jinhui Hu, Yiqiao Guo, Hongqian Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
title | Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
title_full | Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
title_fullStr | Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
title_full_unstemmed | Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
title_short | Drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
title_sort | drug delivery system based on dendritic nanoparticles for enhancement of intravesical instillation |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5644558/ https://www.ncbi.nlm.nih.gov/pubmed/29066888 http://dx.doi.org/10.2147/IJN.S140111 |
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