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In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor

Rationale: Vascular abnormality stemming from the hypoxia-driven elevation of proangiogenic factors is a hallmark for many solid malignant tumors, including colorectal cancer (CRC) and its liver metastasis. We report a hypoxia-triggered liposome-supported metal-polyphenol-gene bio-nanoreactor to tun...

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Autores principales: Chen, Chen, Zhang, Shengchang, Zhang, Rui, Sun, Peng, Shi, Chongdeng, Abdalla, Mohnad, Li, Anning, Xu, Jiawen, Du, Wei, Zhang, Jing, Liu, Ying, Tang, Chunwei, Yang, Zhenmei, Jiang, Xinyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7667679/
https://www.ncbi.nlm.nih.gov/pubmed/33204325
http://dx.doi.org/10.7150/thno.50806
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author Chen, Chen
Zhang, Shengchang
Zhang, Rui
Sun, Peng
Shi, Chongdeng
Abdalla, Mohnad
Li, Anning
Xu, Jiawen
Du, Wei
Zhang, Jing
Liu, Ying
Tang, Chunwei
Yang, Zhenmei
Jiang, Xinyi
author_facet Chen, Chen
Zhang, Shengchang
Zhang, Rui
Sun, Peng
Shi, Chongdeng
Abdalla, Mohnad
Li, Anning
Xu, Jiawen
Du, Wei
Zhang, Jing
Liu, Ying
Tang, Chunwei
Yang, Zhenmei
Jiang, Xinyi
author_sort Chen, Chen
collection PubMed
description Rationale: Vascular abnormality stemming from the hypoxia-driven elevation of proangiogenic factors is a hallmark for many solid malignant tumors, including colorectal cancer (CRC) and its liver metastasis. We report a hypoxia-triggered liposome-supported metal-polyphenol-gene bio-nanoreactor to tune the proangiogenic factor-mediated immunotolerance and synergize the elicited tumoricidal immunity for CRC treatment. Methods: With the aid of polyphenol gallic acid, Cu(2+) ion-based intracellular bio-nanoreactor was synthesized for the delivery of small interfering RNA targeting vascular endothelial growth factor and then cloaked with a hybrid liposomal membrane that harbored a hypoxia-responsive azobenzene derivative. In hypoxic tumor, the liposomal shell disintegrated, and a shrunk-size bio-nanoreactor was burst released. Intracellularly, Cu(2+) from the bio-nanoreactor catalyzed a Fenton-like reaction with glutathione, which efficiently converted H(2)O(2) to •OH and enabled a chemodynamic therapy (CDT) in tumor sites. With the alleviation of proangiogenic factor-mediated immunotolerance and high production of CDT-induced tumor-associated antigens, robust tumoricidal immunity was co-stimulated. Results: With colorectal tumor and its liver metastasis models, we determined the underlying mechanism of proangiogenic factor-mediated immunotolerance and highlighted that the liposomal bio-nanoreactor could create positive feedback among the critical players in the vascular endothelium and synergize the elicited tumoricidal immunity. Conclusion: Our work provides an alternative strategy for exerting efficient tumoricidal immunity in the proangiogenic factor-upregulated subpopulation of CRC patients and may have a wide-ranging impact on cancer immune-anti-angiogenic complementary therapy in clinics.
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spelling pubmed-76676792020-11-16 In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor Chen, Chen Zhang, Shengchang Zhang, Rui Sun, Peng Shi, Chongdeng Abdalla, Mohnad Li, Anning Xu, Jiawen Du, Wei Zhang, Jing Liu, Ying Tang, Chunwei Yang, Zhenmei Jiang, Xinyi Theranostics Research Paper Rationale: Vascular abnormality stemming from the hypoxia-driven elevation of proangiogenic factors is a hallmark for many solid malignant tumors, including colorectal cancer (CRC) and its liver metastasis. We report a hypoxia-triggered liposome-supported metal-polyphenol-gene bio-nanoreactor to tune the proangiogenic factor-mediated immunotolerance and synergize the elicited tumoricidal immunity for CRC treatment. Methods: With the aid of polyphenol gallic acid, Cu(2+) ion-based intracellular bio-nanoreactor was synthesized for the delivery of small interfering RNA targeting vascular endothelial growth factor and then cloaked with a hybrid liposomal membrane that harbored a hypoxia-responsive azobenzene derivative. In hypoxic tumor, the liposomal shell disintegrated, and a shrunk-size bio-nanoreactor was burst released. Intracellularly, Cu(2+) from the bio-nanoreactor catalyzed a Fenton-like reaction with glutathione, which efficiently converted H(2)O(2) to •OH and enabled a chemodynamic therapy (CDT) in tumor sites. With the alleviation of proangiogenic factor-mediated immunotolerance and high production of CDT-induced tumor-associated antigens, robust tumoricidal immunity was co-stimulated. Results: With colorectal tumor and its liver metastasis models, we determined the underlying mechanism of proangiogenic factor-mediated immunotolerance and highlighted that the liposomal bio-nanoreactor could create positive feedback among the critical players in the vascular endothelium and synergize the elicited tumoricidal immunity. Conclusion: Our work provides an alternative strategy for exerting efficient tumoricidal immunity in the proangiogenic factor-upregulated subpopulation of CRC patients and may have a wide-ranging impact on cancer immune-anti-angiogenic complementary therapy in clinics. Ivyspring International Publisher 2020-10-25 /pmc/articles/PMC7667679/ /pubmed/33204325 http://dx.doi.org/10.7150/thno.50806 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
Chen, Chen
Zhang, Shengchang
Zhang, Rui
Sun, Peng
Shi, Chongdeng
Abdalla, Mohnad
Li, Anning
Xu, Jiawen
Du, Wei
Zhang, Jing
Liu, Ying
Tang, Chunwei
Yang, Zhenmei
Jiang, Xinyi
In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
title In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
title_full In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
title_fullStr In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
title_full_unstemmed In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
title_short In situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
title_sort in situ tuning proangiogenic factor-mediated immunotolerance synergizes the tumoricidal immunity via a hypoxia-triggerable liposomal bio-nanoreactor
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7667679/
https://www.ncbi.nlm.nih.gov/pubmed/33204325
http://dx.doi.org/10.7150/thno.50806
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