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Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration

Our previous study found that the intravesical perfusion of metformin has excellent inhibitory effects against bladder cancer (BC). However, this administration route allows the drug to be diluted and excreted in urine. Therefore, increasing the adhesion of metformin to the bladder mucosal layer may...

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Autores principales: Zhang, Xingjian, Hu, Xin, Xie, Yijun, Xie, Lejing, Chen, Xiangyi, Peng, Mei, Li, Duo, Deng, Jun, Xiao, Di, Yang, Xiaoping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534355/
https://www.ncbi.nlm.nih.gov/pubmed/37764495
http://dx.doi.org/10.3390/molecules28186720
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author Zhang, Xingjian
Hu, Xin
Xie, Yijun
Xie, Lejing
Chen, Xiangyi
Peng, Mei
Li, Duo
Deng, Jun
Xiao, Di
Yang, Xiaoping
author_facet Zhang, Xingjian
Hu, Xin
Xie, Yijun
Xie, Lejing
Chen, Xiangyi
Peng, Mei
Li, Duo
Deng, Jun
Xiao, Di
Yang, Xiaoping
author_sort Zhang, Xingjian
collection PubMed
description Our previous study found that the intravesical perfusion of metformin has excellent inhibitory effects against bladder cancer (BC). However, this administration route allows the drug to be diluted and excreted in urine. Therefore, increasing the adhesion of metformin to the bladder mucosal layer may prolong the retention time and increase the pharmacological activity. It is well known that chitosan (Cs) has a strong adhesion to the bladder mucosal layer. Thus, this study established a novel formulation of metformin to enhance its antitumor activity by extending its retention time. In this research, we prepared Cs freeze-dried powder and investigated the effect of metformin-loaded chitosan hydrogels (MLCH) in vitro and in vivo. The results showed that MLCH had a strong inhibitory effect against proliferation and colony formation in vitro. The reduction in BC weight and the expression of tumor biomarkers in orthotopic mice showed the robust antitumor activity of MLCH via intravesical administration in vivo. The non-toxic profile of MLCH was observed as well, using histological examinations. Mechanistically, MLCH showed stronger functional activation of the AMPKα/mTOR signaling pathway compared with metformin alone. These findings aim to make this novel formulation an efficient candidate for managing BC via intravesical administration.
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spelling pubmed-105343552023-09-29 Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration Zhang, Xingjian Hu, Xin Xie, Yijun Xie, Lejing Chen, Xiangyi Peng, Mei Li, Duo Deng, Jun Xiao, Di Yang, Xiaoping Molecules Article Our previous study found that the intravesical perfusion of metformin has excellent inhibitory effects against bladder cancer (BC). However, this administration route allows the drug to be diluted and excreted in urine. Therefore, increasing the adhesion of metformin to the bladder mucosal layer may prolong the retention time and increase the pharmacological activity. It is well known that chitosan (Cs) has a strong adhesion to the bladder mucosal layer. Thus, this study established a novel formulation of metformin to enhance its antitumor activity by extending its retention time. In this research, we prepared Cs freeze-dried powder and investigated the effect of metformin-loaded chitosan hydrogels (MLCH) in vitro and in vivo. The results showed that MLCH had a strong inhibitory effect against proliferation and colony formation in vitro. The reduction in BC weight and the expression of tumor biomarkers in orthotopic mice showed the robust antitumor activity of MLCH via intravesical administration in vivo. The non-toxic profile of MLCH was observed as well, using histological examinations. Mechanistically, MLCH showed stronger functional activation of the AMPKα/mTOR signaling pathway compared with metformin alone. These findings aim to make this novel formulation an efficient candidate for managing BC via intravesical administration. MDPI 2023-09-20 /pmc/articles/PMC10534355/ /pubmed/37764495 http://dx.doi.org/10.3390/molecules28186720 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Xingjian
Hu, Xin
Xie, Yijun
Xie, Lejing
Chen, Xiangyi
Peng, Mei
Li, Duo
Deng, Jun
Xiao, Di
Yang, Xiaoping
Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration
title Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration
title_full Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration
title_fullStr Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration
title_full_unstemmed Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration
title_short Metformin-Loaded Chitosan Hydrogels Suppress Bladder Tumor Growth in an Orthotopic Mouse Model via Intravesical Administration
title_sort metformin-loaded chitosan hydrogels suppress bladder tumor growth in an orthotopic mouse model via intravesical administration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534355/
https://www.ncbi.nlm.nih.gov/pubmed/37764495
http://dx.doi.org/10.3390/molecules28186720
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