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DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression

Patients with triple‐negative breast cancer (TNBC) have the worst clinical outcomes when compared to other subtypes of breast cancer. Nanotechnology‐assisted photothermal therapy (PTT) opens new opportunities for precise cancer treatment. However, thermoresistance caused by PTT, as well as uncertain...

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Autores principales: Chen, Zuqin, Li, Sunfan, Li, Fangzhou, Qin, Cheng, Li, Xianlei, Qing, Guangchao, Wang, Jinjin, Xia, Bozhang, Zhang, Fuxue, Meng, Liangliang, Liang, Xing‐Jie, Xiao, Yueyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238214/
https://www.ncbi.nlm.nih.gov/pubmed/37066748
http://dx.doi.org/10.1002/advs.202206707
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author Chen, Zuqin
Li, Sunfan
Li, Fangzhou
Qin, Cheng
Li, Xianlei
Qing, Guangchao
Wang, Jinjin
Xia, Bozhang
Zhang, Fuxue
Meng, Liangliang
Liang, Xing‐Jie
Xiao, Yueyong
author_facet Chen, Zuqin
Li, Sunfan
Li, Fangzhou
Qin, Cheng
Li, Xianlei
Qing, Guangchao
Wang, Jinjin
Xia, Bozhang
Zhang, Fuxue
Meng, Liangliang
Liang, Xing‐Jie
Xiao, Yueyong
author_sort Chen, Zuqin
collection PubMed
description Patients with triple‐negative breast cancer (TNBC) have the worst clinical outcomes when compared to other subtypes of breast cancer. Nanotechnology‐assisted photothermal therapy (PTT) opens new opportunities for precise cancer treatment. However, thermoresistance caused by PTT, as well as uncertainty in the physiological metabolism of existing phototherapeutic nanoformulations, severely limit their clinical applications. Herein, based on the clinically chemotherapeutic drug mitoxantrone (MTO), a multifunctional nanoplatform (MTO‐micelles) is developed to realize mutually synergistic mild‐photothermal chemotherapy. MTO with excellent near‐infrared absorption (≈669 nm) can function not only as a chemotherapeutic agent but also as a photothermal transduction agent with elevated photothermal conversion efficacy (ƞ = 54.62%). MTO‐micelles can accumulate at the tumor site through the enhanced permeability and retention effect. Following local near‐infrared irradiation, mild hyperthermia (<50 °C) assists MTO in binding tumor cell DNA, resulting in chemotherapeutic sensitization. In addition, downregulation of heat shock protein 70 (HSP70) expression due to enhanced DNA damage can in turn weaken tumor thermoresistance, boosting the efficacy of mild PTT. Both in vitro and in vivo studies indicate that MTO‐micelles possess excellent synergetic tumor inhibition effects. Therefore, the mild‐photothermal chemotherapy strategy based on MTO‐micelles has a promising prospect in the clinical transformation of TNBC treatment.
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spelling pubmed-102382142023-06-04 DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression Chen, Zuqin Li, Sunfan Li, Fangzhou Qin, Cheng Li, Xianlei Qing, Guangchao Wang, Jinjin Xia, Bozhang Zhang, Fuxue Meng, Liangliang Liang, Xing‐Jie Xiao, Yueyong Adv Sci (Weinh) Research Articles Patients with triple‐negative breast cancer (TNBC) have the worst clinical outcomes when compared to other subtypes of breast cancer. Nanotechnology‐assisted photothermal therapy (PTT) opens new opportunities for precise cancer treatment. However, thermoresistance caused by PTT, as well as uncertainty in the physiological metabolism of existing phototherapeutic nanoformulations, severely limit their clinical applications. Herein, based on the clinically chemotherapeutic drug mitoxantrone (MTO), a multifunctional nanoplatform (MTO‐micelles) is developed to realize mutually synergistic mild‐photothermal chemotherapy. MTO with excellent near‐infrared absorption (≈669 nm) can function not only as a chemotherapeutic agent but also as a photothermal transduction agent with elevated photothermal conversion efficacy (ƞ = 54.62%). MTO‐micelles can accumulate at the tumor site through the enhanced permeability and retention effect. Following local near‐infrared irradiation, mild hyperthermia (<50 °C) assists MTO in binding tumor cell DNA, resulting in chemotherapeutic sensitization. In addition, downregulation of heat shock protein 70 (HSP70) expression due to enhanced DNA damage can in turn weaken tumor thermoresistance, boosting the efficacy of mild PTT. Both in vitro and in vivo studies indicate that MTO‐micelles possess excellent synergetic tumor inhibition effects. Therefore, the mild‐photothermal chemotherapy strategy based on MTO‐micelles has a promising prospect in the clinical transformation of TNBC treatment. John Wiley and Sons Inc. 2023-04-17 /pmc/articles/PMC10238214/ /pubmed/37066748 http://dx.doi.org/10.1002/advs.202206707 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Chen, Zuqin
Li, Sunfan
Li, Fangzhou
Qin, Cheng
Li, Xianlei
Qing, Guangchao
Wang, Jinjin
Xia, Bozhang
Zhang, Fuxue
Meng, Liangliang
Liang, Xing‐Jie
Xiao, Yueyong
DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression
title DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression
title_full DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression
title_fullStr DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression
title_full_unstemmed DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression
title_short DNA Damage Inducer Mitoxantrone Amplifies Synergistic Mild‐Photothermal Chemotherapy for TNBC via Decreasing Heat Shock Protein 70 Expression
title_sort dna damage inducer mitoxantrone amplifies synergistic mild‐photothermal chemotherapy for tnbc via decreasing heat shock protein 70 expression
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238214/
https://www.ncbi.nlm.nih.gov/pubmed/37066748
http://dx.doi.org/10.1002/advs.202206707
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