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One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy

Nanoparticle formulations have proven effective for cisplatin delivery. However, the development of a versatile nanoplatform for cisplatin-based combination cancer therapies still remains a great challenge. Methods: In this study, we developed a one-pot synthesis method for a microporous organosilic...

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Autores principales: Zhang, Xiaojuan, He, Chuanchuan, Liu, Xiaoguang, Chen, Yan, Zhao, Pengxuan, Chen, Chen, Yan, Ruicong, Li, Minsi, Fan, Ting, Altine, Bouhari, Yang, Tan, Lu, Yao, Lee, Robert J., Gai, Yongkang, Xiang, Guangya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7053205/
https://www.ncbi.nlm.nih.gov/pubmed/32194844
http://dx.doi.org/10.7150/thno.41077
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author Zhang, Xiaojuan
He, Chuanchuan
Liu, Xiaoguang
Chen, Yan
Zhao, Pengxuan
Chen, Chen
Yan, Ruicong
Li, Minsi
Fan, Ting
Altine, Bouhari
Yang, Tan
Lu, Yao
Lee, Robert J.
Gai, Yongkang
Xiang, Guangya
author_facet Zhang, Xiaojuan
He, Chuanchuan
Liu, Xiaoguang
Chen, Yan
Zhao, Pengxuan
Chen, Chen
Yan, Ruicong
Li, Minsi
Fan, Ting
Altine, Bouhari
Yang, Tan
Lu, Yao
Lee, Robert J.
Gai, Yongkang
Xiang, Guangya
author_sort Zhang, Xiaojuan
collection PubMed
description Nanoparticle formulations have proven effective for cisplatin delivery. However, the development of a versatile nanoplatform for cisplatin-based combination cancer therapies still remains a great challenge. Methods: In this study, we developed a one-pot synthesis method for a microporous organosilica shell-coated cisplatin nanoplatform using a reverse microemulsion method, and explored its application in co-delivering acriflavine (ACF) for inhibiting hypoxia-inducible factor-1 (HIF-1). Results: The resulting nanoparticles were tunable, and they could be optimized to a monodisperse population of particles in the desired size range (40-50 nm). In addition, organic mPEG2000-silane and tetrasulfide bond-bridged organosilica were integrated into the surface and silica matrix of nanoparticles for prolonged blood circulation and tumor-selective glutathione-responsive degradation, respectively. After reaching the tumor sites, cisplatin induced cancer cell death and activated HIF-1 pathways, resulting in acquired drug resistance and tumor metastasis. To address this issue, ACF was co-loaded with cisplatin to prevent the formation of HIF-1α/β dimers and suppress HIF-1 function. Hence, the efficacy of cisplatin was improved, and cancer metastasis was inhibited. Conclusion: Both in vitro and in vivo results suggested that this core-shell nanostructured cisplatin delivery system represented a highly efficacious and promising nanoplatform for the synergistic delivery of combination therapies involving cisplatin.
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spelling pubmed-70532052020-03-19 One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy Zhang, Xiaojuan He, Chuanchuan Liu, Xiaoguang Chen, Yan Zhao, Pengxuan Chen, Chen Yan, Ruicong Li, Minsi Fan, Ting Altine, Bouhari Yang, Tan Lu, Yao Lee, Robert J. Gai, Yongkang Xiang, Guangya Theranostics Research Paper Nanoparticle formulations have proven effective for cisplatin delivery. However, the development of a versatile nanoplatform for cisplatin-based combination cancer therapies still remains a great challenge. Methods: In this study, we developed a one-pot synthesis method for a microporous organosilica shell-coated cisplatin nanoplatform using a reverse microemulsion method, and explored its application in co-delivering acriflavine (ACF) for inhibiting hypoxia-inducible factor-1 (HIF-1). Results: The resulting nanoparticles were tunable, and they could be optimized to a monodisperse population of particles in the desired size range (40-50 nm). In addition, organic mPEG2000-silane and tetrasulfide bond-bridged organosilica were integrated into the surface and silica matrix of nanoparticles for prolonged blood circulation and tumor-selective glutathione-responsive degradation, respectively. After reaching the tumor sites, cisplatin induced cancer cell death and activated HIF-1 pathways, resulting in acquired drug resistance and tumor metastasis. To address this issue, ACF was co-loaded with cisplatin to prevent the formation of HIF-1α/β dimers and suppress HIF-1 function. Hence, the efficacy of cisplatin was improved, and cancer metastasis was inhibited. Conclusion: Both in vitro and in vivo results suggested that this core-shell nanostructured cisplatin delivery system represented a highly efficacious and promising nanoplatform for the synergistic delivery of combination therapies involving cisplatin. Ivyspring International Publisher 2020-02-03 /pmc/articles/PMC7053205/ /pubmed/32194844 http://dx.doi.org/10.7150/thno.41077 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Zhang, Xiaojuan
He, Chuanchuan
Liu, Xiaoguang
Chen, Yan
Zhao, Pengxuan
Chen, Chen
Yan, Ruicong
Li, Minsi
Fan, Ting
Altine, Bouhari
Yang, Tan
Lu, Yao
Lee, Robert J.
Gai, Yongkang
Xiang, Guangya
One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy
title One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy
title_full One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy
title_fullStr One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy
title_full_unstemmed One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy
title_short One-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for HIF-1-targeted combination cancer therapy
title_sort one-pot synthesis of a microporous organosilica-coated cisplatin nanoplatform for hif-1-targeted combination cancer therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7053205/
https://www.ncbi.nlm.nih.gov/pubmed/32194844
http://dx.doi.org/10.7150/thno.41077
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