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Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy

BACKGROUND: Although photodynamic therapy (PDT) has emerged as a potential alternative to conventional chemotherapy, the low reactive oxygen species (ROS) yield of the photosensitizer such as TiO(2) nanoparticles has limited its application. In addition, it is difficult to achieve effective tumor tr...

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Autores principales: Zheng, Kun, Chen, Runze, Sun, Yanxue, Tan, Zhenquan, Liu, Ye, Cheng, Xiao, Leng, Junke, Guo, Zhaoming, Xu, Pengcheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons Australia, Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7262929/
https://www.ncbi.nlm.nih.gov/pubmed/32246815
http://dx.doi.org/10.1111/1759-7714.13414
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author Zheng, Kun
Chen, Runze
Sun, Yanxue
Tan, Zhenquan
Liu, Ye
Cheng, Xiao
Leng, Junke
Guo, Zhaoming
Xu, Pengcheng
author_facet Zheng, Kun
Chen, Runze
Sun, Yanxue
Tan, Zhenquan
Liu, Ye
Cheng, Xiao
Leng, Junke
Guo, Zhaoming
Xu, Pengcheng
author_sort Zheng, Kun
collection PubMed
description BACKGROUND: Although photodynamic therapy (PDT) has emerged as a potential alternative to conventional chemotherapy, the low reactive oxygen species (ROS) yield of the photosensitizer such as TiO(2) nanoparticles has limited its application. In addition, it is difficult to achieve effective tumor treatment with a single tumor therapy. METHODS: We used TiOx nanocomposite (YSA‐PEG‐TiO(X)) instead of TiO(2) as a photosensitizer to solve the problem of insufficient ROS generation in PDT. Benefiting from the desired mesoporous structure of TiOx, Cantharidin (CTD), one of the active components of mylabris, is loaded into TiOx for targeted combination of chemotherapy and PDT. The cellular uptake in human non‐small cell lung carcinoma cell line (A549) and human normal breast cell line (MCF 10A) was evaluated by confocal microscopy. in vitro cytotoxicity was evaluated using Cell Counting Kit‐8 assay. The ROS was detected via a chemical probe DCFH‐DA and the photodynamic treatment effect of YSA‐PEG‐TiOx was further evaluated by a living‐dead staining. The cell apoptosis was detected by the flow cytometry. RESULTS: Our findings showed that the modification of YSA peptide improved the cytotoxicity of YSA‐PEG‐TiO(X)/CTD to EphA2 overexpressing A549 non‐small cell lung cancer (NSCLC) than non‐YSA modified counterparts. In addition, TiOx generated adequate ROS under X‐ray irradiation to further kill cancer cells. Flow analysis results also proved the superiority of this combined treatment. CONCLUSIONS: YSA‐PEG‐TiO(X) nanoparticles could significantly increase ROS production under X‐ray exposure and provide a new drug delivery nanocarrier for CTD in combination with PDT to achieve effective NSCLC treatment.
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spelling pubmed-72629292020-06-03 Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy Zheng, Kun Chen, Runze Sun, Yanxue Tan, Zhenquan Liu, Ye Cheng, Xiao Leng, Junke Guo, Zhaoming Xu, Pengcheng Thorac Cancer Original Articles BACKGROUND: Although photodynamic therapy (PDT) has emerged as a potential alternative to conventional chemotherapy, the low reactive oxygen species (ROS) yield of the photosensitizer such as TiO(2) nanoparticles has limited its application. In addition, it is difficult to achieve effective tumor treatment with a single tumor therapy. METHODS: We used TiOx nanocomposite (YSA‐PEG‐TiO(X)) instead of TiO(2) as a photosensitizer to solve the problem of insufficient ROS generation in PDT. Benefiting from the desired mesoporous structure of TiOx, Cantharidin (CTD), one of the active components of mylabris, is loaded into TiOx for targeted combination of chemotherapy and PDT. The cellular uptake in human non‐small cell lung carcinoma cell line (A549) and human normal breast cell line (MCF 10A) was evaluated by confocal microscopy. in vitro cytotoxicity was evaluated using Cell Counting Kit‐8 assay. The ROS was detected via a chemical probe DCFH‐DA and the photodynamic treatment effect of YSA‐PEG‐TiOx was further evaluated by a living‐dead staining. The cell apoptosis was detected by the flow cytometry. RESULTS: Our findings showed that the modification of YSA peptide improved the cytotoxicity of YSA‐PEG‐TiO(X)/CTD to EphA2 overexpressing A549 non‐small cell lung cancer (NSCLC) than non‐YSA modified counterparts. In addition, TiOx generated adequate ROS under X‐ray irradiation to further kill cancer cells. Flow analysis results also proved the superiority of this combined treatment. CONCLUSIONS: YSA‐PEG‐TiO(X) nanoparticles could significantly increase ROS production under X‐ray exposure and provide a new drug delivery nanocarrier for CTD in combination with PDT to achieve effective NSCLC treatment. John Wiley & Sons Australia, Ltd 2020-04-04 2020-06 /pmc/articles/PMC7262929/ /pubmed/32246815 http://dx.doi.org/10.1111/1759-7714.13414 Text en © 2020 The Authors. Thoracic Cancer published by China Lung Oncology Group and John Wiley & Sons Australia, Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Zheng, Kun
Chen, Runze
Sun, Yanxue
Tan, Zhenquan
Liu, Ye
Cheng, Xiao
Leng, Junke
Guo, Zhaoming
Xu, Pengcheng
Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
title Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
title_full Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
title_fullStr Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
title_full_unstemmed Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
title_short Cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
title_sort cantharidin‐loaded functional mesoporous titanium peroxide nanoparticles for non‐small cell lung cancer targeted chemotherapy combined with high effective photodynamic therapy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7262929/
https://www.ncbi.nlm.nih.gov/pubmed/32246815
http://dx.doi.org/10.1111/1759-7714.13414
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