Cargando…

A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy

Hypoxic tumor microenvironment is the bottleneck of the conventional photodynamic therapy (PDT) and significantly weakens the overall therapeutic efficiency. Herein, versatile metal–organic framework (MOF) nanosheets (DBBC‐UiO) comprised of bacteriochlorin ligand and Hf(6)(µ(3)‐O)(4)(µ(3)‐OH)(4) clu...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Kai, Yu, Zhaofeng, Meng, Xiangdan, Zhao, Weidong, Shi, Zhuojie, Yang, Zhou, Dong, Haifeng, Zhang, Xueji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6661935/
https://www.ncbi.nlm.nih.gov/pubmed/31380214
http://dx.doi.org/10.1002/advs.201900530
_version_ 1783439553418231808
author Zhang, Kai
Yu, Zhaofeng
Meng, Xiangdan
Zhao, Weidong
Shi, Zhuojie
Yang, Zhou
Dong, Haifeng
Zhang, Xueji
author_facet Zhang, Kai
Yu, Zhaofeng
Meng, Xiangdan
Zhao, Weidong
Shi, Zhuojie
Yang, Zhou
Dong, Haifeng
Zhang, Xueji
author_sort Zhang, Kai
collection PubMed
description Hypoxic tumor microenvironment is the bottleneck of the conventional photodynamic therapy (PDT) and significantly weakens the overall therapeutic efficiency. Herein, versatile metal–organic framework (MOF) nanosheets (DBBC‐UiO) comprised of bacteriochlorin ligand and Hf(6)(µ(3)‐O)(4)(µ(3)‐OH)(4) clusters to address this tricky issue are designed. The resulting DBBC‐UiO enables numerous superoxide anion radical (O(2) (−•)) generation via a type I mechanism with a 750 nm NIR‐laser irradiation, part of which transforms to high toxic hydroxyl radical (OH•) and oxygen (O(2)) through superoxide dismutase (SOD)‐mediated catalytic reactions under severe hypoxic microenvironment (2% O(2)), and the partial recycled O(2) enhances O(2) (−•) generation. Owing to the synergistic radicals, it realizes advanced antitumor performance with 91% cell mortality against cancer cells in vitro, and highly efficient hypoxic solid tumor ablation in vivo. It also accomplishes photoacoustic imaging (PAI) for cancer diagnosis. This DBBC‐UiO, taking advantage of superb penetration depth of the 750 nm laser and distinct antihypoxia activities, offers new opportunities for PDT against clinically hypoxic cancer.
format Online
Article
Text
id pubmed-6661935
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-66619352019-08-02 A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy Zhang, Kai Yu, Zhaofeng Meng, Xiangdan Zhao, Weidong Shi, Zhuojie Yang, Zhou Dong, Haifeng Zhang, Xueji Adv Sci (Weinh) Communications Hypoxic tumor microenvironment is the bottleneck of the conventional photodynamic therapy (PDT) and significantly weakens the overall therapeutic efficiency. Herein, versatile metal–organic framework (MOF) nanosheets (DBBC‐UiO) comprised of bacteriochlorin ligand and Hf(6)(µ(3)‐O)(4)(µ(3)‐OH)(4) clusters to address this tricky issue are designed. The resulting DBBC‐UiO enables numerous superoxide anion radical (O(2) (−•)) generation via a type I mechanism with a 750 nm NIR‐laser irradiation, part of which transforms to high toxic hydroxyl radical (OH•) and oxygen (O(2)) through superoxide dismutase (SOD)‐mediated catalytic reactions under severe hypoxic microenvironment (2% O(2)), and the partial recycled O(2) enhances O(2) (−•) generation. Owing to the synergistic radicals, it realizes advanced antitumor performance with 91% cell mortality against cancer cells in vitro, and highly efficient hypoxic solid tumor ablation in vivo. It also accomplishes photoacoustic imaging (PAI) for cancer diagnosis. This DBBC‐UiO, taking advantage of superb penetration depth of the 750 nm laser and distinct antihypoxia activities, offers new opportunities for PDT against clinically hypoxic cancer. John Wiley and Sons Inc. 2019-05-16 /pmc/articles/PMC6661935/ /pubmed/31380214 http://dx.doi.org/10.1002/advs.201900530 Text en © 2019 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim 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 Communications
Zhang, Kai
Yu, Zhaofeng
Meng, Xiangdan
Zhao, Weidong
Shi, Zhuojie
Yang, Zhou
Dong, Haifeng
Zhang, Xueji
A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy
title A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy
title_full A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy
title_fullStr A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy
title_full_unstemmed A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy
title_short A Bacteriochlorin‐Based Metal–Organic Framework Nanosheet Superoxide Radical Generator for Photoacoustic Imaging‐Guided Highly Efficient Photodynamic Therapy
title_sort bacteriochlorin‐based metal–organic framework nanosheet superoxide radical generator for photoacoustic imaging‐guided highly efficient photodynamic therapy
topic Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6661935/
https://www.ncbi.nlm.nih.gov/pubmed/31380214
http://dx.doi.org/10.1002/advs.201900530
work_keys_str_mv AT zhangkai abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT yuzhaofeng abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT mengxiangdan abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT zhaoweidong abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT shizhuojie abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT yangzhou abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT donghaifeng abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT zhangxueji abacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT zhangkai bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT yuzhaofeng bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT mengxiangdan bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT zhaoweidong bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT shizhuojie bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT yangzhou bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT donghaifeng bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy
AT zhangxueji bacteriochlorinbasedmetalorganicframeworknanosheetsuperoxideradicalgeneratorforphotoacousticimagingguidedhighlyefficientphotodynamictherapy