In recent years, reactive species-based cancer therapies have attracted tremendous attention due to their simplicity, controllability, and effectiveness. Herein, we overviewed the state-of-art advance for photo-controlled generation of highly reactive radical species with nanomaterials for cancer therapy. First, we summarized the most widely explored reactive species, such as singlet oxygen, superoxide radical anion (O2●), nitric oxide (●NO), carbon monoxide, alkyl radicals, and their corresponding secondary reactive species generated by interaction with other biological molecules. Then, we discussed the generating mechanisms of these highly reactive species stimulated by light irradiation, followed by their anticancer effect, and the syner...
Engineered nanomaterials that produce reactive oxygen species on exposure to X- and gamma-rays used ...
In this study we present an overview of the recent results of a novel approach to antioxidant and an...
Advances in nanomaterials science contributed in recent years to develop new devices and systems in ...
The present review aims at highlighting recent advances in the development of photocatalysts devoted...
Abstract In various reactive oxygen species (ROS)‐based antitumor approaches (e.g., photodynamic the...
The cellular milieu in which malignant growths or cancer stem cells reside is known as the tumour mi...
Photodynamic therapy is currently one of the most promising approaches for targeted cancer treatment...
While cytotoxic reactive oxygen species (ROS) play an important role in fighting cancer, developing ...
The incidence of numerous types of cancer has been increasing over recent years, representing the se...
Lipeng Zhu,1 Yunlu Dai,1,2 Lizeng Gao,3 Qi Zhao1,2 1Cancer Centre, Faculty of Health Sciences, Unive...
Reactive oxygen species (ROS) is important for the well-being of cells since they served as messenge...
Cancer seriously threatens human health. As compared to normal tissue cells, tumor cells are general...
Engineered nanomaterials that produce reactive oxygen species on exposure to X‐ and gamma‐rays used ...
Abstract It is of utmost urgency to achieve effective and safe anticancer treatment with the increas...
Abstract The biological functions and toxic effects of reactive oxygen species (ROS) are generally e...
Engineered nanomaterials that produce reactive oxygen species on exposure to X- and gamma-rays used ...
In this study we present an overview of the recent results of a novel approach to antioxidant and an...
Advances in nanomaterials science contributed in recent years to develop new devices and systems in ...
The present review aims at highlighting recent advances in the development of photocatalysts devoted...
Abstract In various reactive oxygen species (ROS)‐based antitumor approaches (e.g., photodynamic the...
The cellular milieu in which malignant growths or cancer stem cells reside is known as the tumour mi...
Photodynamic therapy is currently one of the most promising approaches for targeted cancer treatment...
While cytotoxic reactive oxygen species (ROS) play an important role in fighting cancer, developing ...
The incidence of numerous types of cancer has been increasing over recent years, representing the se...
Lipeng Zhu,1 Yunlu Dai,1,2 Lizeng Gao,3 Qi Zhao1,2 1Cancer Centre, Faculty of Health Sciences, Unive...
Reactive oxygen species (ROS) is important for the well-being of cells since they served as messenge...
Cancer seriously threatens human health. As compared to normal tissue cells, tumor cells are general...
Engineered nanomaterials that produce reactive oxygen species on exposure to X‐ and gamma‐rays used ...
Abstract It is of utmost urgency to achieve effective and safe anticancer treatment with the increas...
Abstract The biological functions and toxic effects of reactive oxygen species (ROS) are generally e...
Engineered nanomaterials that produce reactive oxygen species on exposure to X- and gamma-rays used ...
In this study we present an overview of the recent results of a novel approach to antioxidant and an...
Advances in nanomaterials science contributed in recent years to develop new devices and systems in ...