Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT process is dependent on O-2 concentration. Herein, we design biocompatible manganese ferrite nanoparticle-anchored mesoporous silica nanoparticles (MFMSNs) to overcome hypoxia, consequently enhancing the therapeutic efficiency of PDT. By exploiting the continuous O-2-evolving property of MnFe2O4 nanoparticles through the Fenton reaction, MFMSNs relieve hypoxic condition using a small amount of nanoparticles and improve therapeutic outcomes of PDT for tumors in vivo. In addition, MFMSNs exhibit T-2 contrast effect in magnetic resonance imaging (MRI), allowing in vivo tracking of MFMSNs. These findings demonstrate great potential of MFMSNs for ther...
Core-shell (C/S) structured upconversion coated Fe3O4 nanoparticles (NPs) are of great interest due ...
[[abstract]]Functionalization of mesoporous silica nanoparticles (MSNs) with Pd-porphyrins for cance...
The use of inorganic nanomaterials to tackle and exploit the intrinsic chemical nature of the tumor ...
Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT proc...
Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT proc...
Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT proc...
The integration of reactive oxygen species (ROS)-involved photodynamic therapy (PDT) and chemodynami...
The efficacy of the conventional photodynamic therapy (PDT) is markedly suppressed by limited penetr...
In order to achieve safe and high-efficient photodynamic therapy (PDT), it was a powerful strategy o...
Manganese oxide-coated nanopipettes were developed to overcome the limitation of photodynamic therap...
[[abstract]]Multimodal imaging contrast agents for cancer that can not only perform diagnostic funct...
This article reports the synthesis of manganese ferrite nano-assemblies (MNAs) encapsulated with flu...
Abstract The development of nanoparticles capable of inducing reactive oxygen species (ROS) formatio...
Photodynamic therapy (PDT) is a medical treatment that utilizes light and photosensitizers to tre...
Introduction: Hypoxic tumor microenvironment (TME) is the major contributor to cancer metastasis, re...
Core-shell (C/S) structured upconversion coated Fe3O4 nanoparticles (NPs) are of great interest due ...
[[abstract]]Functionalization of mesoporous silica nanoparticles (MSNs) with Pd-porphyrins for cance...
The use of inorganic nanomaterials to tackle and exploit the intrinsic chemical nature of the tumor ...
Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT proc...
Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT proc...
Therapeutic effects of photodynamic therapy (PDT) are limited by cancer hypoxia because the PDT proc...
The integration of reactive oxygen species (ROS)-involved photodynamic therapy (PDT) and chemodynami...
The efficacy of the conventional photodynamic therapy (PDT) is markedly suppressed by limited penetr...
In order to achieve safe and high-efficient photodynamic therapy (PDT), it was a powerful strategy o...
Manganese oxide-coated nanopipettes were developed to overcome the limitation of photodynamic therap...
[[abstract]]Multimodal imaging contrast agents for cancer that can not only perform diagnostic funct...
This article reports the synthesis of manganese ferrite nano-assemblies (MNAs) encapsulated with flu...
Abstract The development of nanoparticles capable of inducing reactive oxygen species (ROS) formatio...
Photodynamic therapy (PDT) is a medical treatment that utilizes light and photosensitizers to tre...
Introduction: Hypoxic tumor microenvironment (TME) is the major contributor to cancer metastasis, re...
Core-shell (C/S) structured upconversion coated Fe3O4 nanoparticles (NPs) are of great interest due ...
[[abstract]]Functionalization of mesoporous silica nanoparticles (MSNs) with Pd-porphyrins for cance...
The use of inorganic nanomaterials to tackle and exploit the intrinsic chemical nature of the tumor ...