Cargando…

A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy

Metastasis accounts for 90% of breast cancer deaths, where the lethality could be attributed to the poor drug accumulation at the metastatic loci. The tolerance to chemotherapy induced by breast cancer stem cells (BCSCs) and their particular redox microenvironment further aggravate the therapeutic d...

Descripción completa

Detalles Bibliográficos
Autores principales: Chu, Yongchao, Luo, Yifan, Su, Boyu, Li, Chao, Guo, Qin, Zhang, Yiwen, Liu, Peixin, Chen, Hongyi, Zhao, Zhenhao, Zhou, Zheng, Wang, Yu, Jiang, Chen, Sun, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9939302/
https://www.ncbi.nlm.nih.gov/pubmed/36815033
http://dx.doi.org/10.1016/j.apsb.2022.05.027
_version_ 1784890817093042176
author Chu, Yongchao
Luo, Yifan
Su, Boyu
Li, Chao
Guo, Qin
Zhang, Yiwen
Liu, Peixin
Chen, Hongyi
Zhao, Zhenhao
Zhou, Zheng
Wang, Yu
Jiang, Chen
Sun, Tao
author_facet Chu, Yongchao
Luo, Yifan
Su, Boyu
Li, Chao
Guo, Qin
Zhang, Yiwen
Liu, Peixin
Chen, Hongyi
Zhao, Zhenhao
Zhou, Zheng
Wang, Yu
Jiang, Chen
Sun, Tao
author_sort Chu, Yongchao
collection PubMed
description Metastasis accounts for 90% of breast cancer deaths, where the lethality could be attributed to the poor drug accumulation at the metastatic loci. The tolerance to chemotherapy induced by breast cancer stem cells (BCSCs) and their particular redox microenvironment further aggravate the therapeutic dilemma. To be specific, therapy-resistant BCSCs can differentiate into heterogeneous tumor cells constantly, and simultaneously dynamic maintenance of redox homeostasis promote tumor cells to retro-differentiate into stem-like state in response to cytotoxic chemotherapy. Herein, we develop a specifically-designed biomimic platform employing neutrophil membrane as shell to inherit a neutrophil-like tumor-targeting capability, and anchored chemotherapeutic and BCSCs-differentiating reagents with nitroimidazole (NI) to yield two hypoxia-responsive prodrugs, which could be encapsulated into a polymeric nitroimidazole core. The platform can actively target the lung metastasis sites of triple negative breast cancer (TNBC), and release the escorted drugs upon being triggered by the hypoxia microenvironment. During the responsiveness, the differentiating agent could promote transferring BCSCs into non-BCSCs, and simultaneously the nitroimidazole moieties conjugated on the polymer and prodrugs could modulate the tumor microenvironment by depleting nicotinamide adenine dinucleotide phosphate hydrogen (NADPH) and amplifying intracellular oxidative stress to prevent tumor cells retro-differentiation into BCSCs. In combination, the BCSCs differentiation and tumor microenvironment modulation synergistically could enhance the chemotherapeutic cytotoxicity, and remarkably suppress tumor growth and lung metastasis. Hopefully, this work can provide a new insight in to comprehensively treat TNBC and lung metastasis using a versatile platform.
format Online
Article
Text
id pubmed-9939302
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-99393022023-02-21 A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy Chu, Yongchao Luo, Yifan Su, Boyu Li, Chao Guo, Qin Zhang, Yiwen Liu, Peixin Chen, Hongyi Zhao, Zhenhao Zhou, Zheng Wang, Yu Jiang, Chen Sun, Tao Acta Pharm Sin B Original Article Metastasis accounts for 90% of breast cancer deaths, where the lethality could be attributed to the poor drug accumulation at the metastatic loci. The tolerance to chemotherapy induced by breast cancer stem cells (BCSCs) and their particular redox microenvironment further aggravate the therapeutic dilemma. To be specific, therapy-resistant BCSCs can differentiate into heterogeneous tumor cells constantly, and simultaneously dynamic maintenance of redox homeostasis promote tumor cells to retro-differentiate into stem-like state in response to cytotoxic chemotherapy. Herein, we develop a specifically-designed biomimic platform employing neutrophil membrane as shell to inherit a neutrophil-like tumor-targeting capability, and anchored chemotherapeutic and BCSCs-differentiating reagents with nitroimidazole (NI) to yield two hypoxia-responsive prodrugs, which could be encapsulated into a polymeric nitroimidazole core. The platform can actively target the lung metastasis sites of triple negative breast cancer (TNBC), and release the escorted drugs upon being triggered by the hypoxia microenvironment. During the responsiveness, the differentiating agent could promote transferring BCSCs into non-BCSCs, and simultaneously the nitroimidazole moieties conjugated on the polymer and prodrugs could modulate the tumor microenvironment by depleting nicotinamide adenine dinucleotide phosphate hydrogen (NADPH) and amplifying intracellular oxidative stress to prevent tumor cells retro-differentiation into BCSCs. In combination, the BCSCs differentiation and tumor microenvironment modulation synergistically could enhance the chemotherapeutic cytotoxicity, and remarkably suppress tumor growth and lung metastasis. Hopefully, this work can provide a new insight in to comprehensively treat TNBC and lung metastasis using a versatile platform. Elsevier 2023-01 2022-05-29 /pmc/articles/PMC9939302/ /pubmed/36815033 http://dx.doi.org/10.1016/j.apsb.2022.05.027 Text en © 2022 Chinese Pharmaceutical Association and Institute of Materia Medica, Chinese Academy of Medical Sciences. Production and hosting by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Chu, Yongchao
Luo, Yifan
Su, Boyu
Li, Chao
Guo, Qin
Zhang, Yiwen
Liu, Peixin
Chen, Hongyi
Zhao, Zhenhao
Zhou, Zheng
Wang, Yu
Jiang, Chen
Sun, Tao
A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
title A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
title_full A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
title_fullStr A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
title_full_unstemmed A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
title_short A neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
title_sort neutrophil-biomimic platform for eradicating metastatic breast cancer stem-like cells by redox microenvironment modulation and hypoxia-triggered differentiation therapy
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9939302/
https://www.ncbi.nlm.nih.gov/pubmed/36815033
http://dx.doi.org/10.1016/j.apsb.2022.05.027
work_keys_str_mv AT chuyongchao aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT luoyifan aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT suboyu aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT lichao aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT guoqin aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT zhangyiwen aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT liupeixin aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT chenhongyi aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT zhaozhenhao aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT zhouzheng aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT wangyu aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT jiangchen aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT suntao aneutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT chuyongchao neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT luoyifan neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT suboyu neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT lichao neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT guoqin neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT zhangyiwen neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT liupeixin neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT chenhongyi neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT zhaozhenhao neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT zhouzheng neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT wangyu neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT jiangchen neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy
AT suntao neutrophilbiomimicplatformforeradicatingmetastaticbreastcancerstemlikecellsbyredoxmicroenvironmentmodulationandhypoxiatriggereddifferentiationtherapy