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pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer

As reported, breast cancer is one of the most common malignancies in women and has overtaken lung cancer as the most commonly diagnosed cancer worldwide by 2020. Currently, phototherapy is a promising anti-tumor therapy due to its fewer side effects, less invasiveness, and lower cost. However, its a...

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Autores principales: Wang, Wenyan, Li, Zimu, Nie, Xiaozhong, Zeng, Wenfeng, Zhang, Yi, Deng, Yimin, Chen, Hongzhong, Zeng, Xiaowei, Ma, Hualin, Zheng, Yi, Gao, Nansha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8895045/
https://www.ncbi.nlm.nih.gov/pubmed/35252143
http://dx.doi.org/10.3389/fbioe.2022.836468
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author Wang, Wenyan
Li, Zimu
Nie, Xiaozhong
Zeng, Wenfeng
Zhang, Yi
Deng, Yimin
Chen, Hongzhong
Zeng, Xiaowei
Ma, Hualin
Zheng, Yi
Gao, Nansha
author_facet Wang, Wenyan
Li, Zimu
Nie, Xiaozhong
Zeng, Wenfeng
Zhang, Yi
Deng, Yimin
Chen, Hongzhong
Zeng, Xiaowei
Ma, Hualin
Zheng, Yi
Gao, Nansha
author_sort Wang, Wenyan
collection PubMed
description As reported, breast cancer is one of the most common malignancies in women and has overtaken lung cancer as the most commonly diagnosed cancer worldwide by 2020. Currently, phototherapy is a promising anti-tumor therapy due to its fewer side effects, less invasiveness, and lower cost. However, its application in cancer therapeutics is limited by the incomplete therapeutic effect caused by low drug penetration and monotherapy. Herein, we built a charge-reversal nanoplatform (Ce6-PLGA@PDA-PAH-DMMA NPs), including polydopamine (PDA) and chlorin e6 (Ce6) for enhancing photothermal/photodynamic synergistic therapy. The PAH-DMMA charge-reversal layer enabled Ce6-PLGA@PDA-PAH-DMMA NPs to have long blood circulation at the normal physiological environment and to successfully realize charge reversal under the weakly acidic tumor microenvironment, improving cellular uptake. Besides, in vitro tests demonstrated that Ce6-PLGA@PDA-PAH-DMMA NPs had high photothermal conversion and greater anti-tumor activity than no charge-reversal nanoparticles, which overcame the limited tumor therapeutic efficacy of PTT or photodynamic therapy alone. Overall, the design of pH-responsive and charge-reversal nanoparticles (Ce6-PLGA@PDA-PAH-DMMA NPs) provided a promising approach for synergistic PTT/PDT therapy against breast cancer.
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spelling pubmed-88950452022-03-05 pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer Wang, Wenyan Li, Zimu Nie, Xiaozhong Zeng, Wenfeng Zhang, Yi Deng, Yimin Chen, Hongzhong Zeng, Xiaowei Ma, Hualin Zheng, Yi Gao, Nansha Front Bioeng Biotechnol Bioengineering and Biotechnology As reported, breast cancer is one of the most common malignancies in women and has overtaken lung cancer as the most commonly diagnosed cancer worldwide by 2020. Currently, phototherapy is a promising anti-tumor therapy due to its fewer side effects, less invasiveness, and lower cost. However, its application in cancer therapeutics is limited by the incomplete therapeutic effect caused by low drug penetration and monotherapy. Herein, we built a charge-reversal nanoplatform (Ce6-PLGA@PDA-PAH-DMMA NPs), including polydopamine (PDA) and chlorin e6 (Ce6) for enhancing photothermal/photodynamic synergistic therapy. The PAH-DMMA charge-reversal layer enabled Ce6-PLGA@PDA-PAH-DMMA NPs to have long blood circulation at the normal physiological environment and to successfully realize charge reversal under the weakly acidic tumor microenvironment, improving cellular uptake. Besides, in vitro tests demonstrated that Ce6-PLGA@PDA-PAH-DMMA NPs had high photothermal conversion and greater anti-tumor activity than no charge-reversal nanoparticles, which overcame the limited tumor therapeutic efficacy of PTT or photodynamic therapy alone. Overall, the design of pH-responsive and charge-reversal nanoparticles (Ce6-PLGA@PDA-PAH-DMMA NPs) provided a promising approach for synergistic PTT/PDT therapy against breast cancer. Frontiers Media S.A. 2022-02-18 /pmc/articles/PMC8895045/ /pubmed/35252143 http://dx.doi.org/10.3389/fbioe.2022.836468 Text en Copyright © 2022 Wang, Li, Nie, Zeng, Zhang, Deng, Chen, Zeng, Ma, Zheng and Gao. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Wang, Wenyan
Li, Zimu
Nie, Xiaozhong
Zeng, Wenfeng
Zhang, Yi
Deng, Yimin
Chen, Hongzhong
Zeng, Xiaowei
Ma, Hualin
Zheng, Yi
Gao, Nansha
pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer
title pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer
title_full pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer
title_fullStr pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer
title_full_unstemmed pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer
title_short pH-Sensitive and Charge-Reversal Polymeric Nanoplatform Enhanced Photothermal/Photodynamic Synergistic Therapy for Breast Cancer
title_sort ph-sensitive and charge-reversal polymeric nanoplatform enhanced photothermal/photodynamic synergistic therapy for breast cancer
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8895045/
https://www.ncbi.nlm.nih.gov/pubmed/35252143
http://dx.doi.org/10.3389/fbioe.2022.836468
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