Reactive oxygen species (ROS) mediate multiple physiological functions; however, the over-accumulation of ROS causes premature aging and/or death and is associated with various inflammatory conditions. Nevertheless, there are limited clinical treatment options that are currently available. The good news is that owing to the considerable advances in nanoscience, multiple types of nanomaterials with unique ROS-scavenging abilities that influence the temporospatial dynamic behaviors of ROS in biological systems have been developed. This has led to the emergence of next-generation nanomaterial-controlled strategies aimed at ameliorating ROS-related inflammatory conditions. Accordingly, herein we reviewed recent progress in research on nanothera...
In this study we present an overview of the recent results of a novel approach to antioxidant and an...
Nanoparticles are emerging as a useful tool for a wide variety of biomedical, consumer and instrumen...
Nanotechnology has made significant advances in the reduction of free radical damage in the field of...
An imbalance between the formation of reactive oxygen species (ROS) and the reaction of antioxidant ...
Atherosclerosis (AS), a chronic arterial disease, is the leading cause of death in western developed...
Nanomedicine, the offspring born from the marriage of nanotechnology and medicine, has already broug...
Oxidation is an almost ubiquitous feature of inflammatory reactions. We discuss the development of n...
Interventional coronary reperfusion strategies are widely adopted to treat acute myocardial infarcti...
Nanomaterials are capable of generating reactive oxygen species (ROS) due to defect-induced electron...
Oxidative stress-dependent inflammatory diseases represent a major concern for the population’s heal...
SARS-CoV-2 has caused up to 127 million cases of COVID-19. Approximately 5% of COVID-19 patients dev...
Rheumatoid arthritis (RA) is a chronic and debilitating inflammatory condition characterized by join...
Reactive oxygen and nitrogen species play a critical role in many degenerative diseases and in aging...
The pharmacological therapy for gastrointestinal (GI) diseases, such as inflammatory bowel diseases,...
Stroke has a high rate of morbidity and disability, which seriously endangers human health. In strok...
In this study we present an overview of the recent results of a novel approach to antioxidant and an...
Nanoparticles are emerging as a useful tool for a wide variety of biomedical, consumer and instrumen...
Nanotechnology has made significant advances in the reduction of free radical damage in the field of...
An imbalance between the formation of reactive oxygen species (ROS) and the reaction of antioxidant ...
Atherosclerosis (AS), a chronic arterial disease, is the leading cause of death in western developed...
Nanomedicine, the offspring born from the marriage of nanotechnology and medicine, has already broug...
Oxidation is an almost ubiquitous feature of inflammatory reactions. We discuss the development of n...
Interventional coronary reperfusion strategies are widely adopted to treat acute myocardial infarcti...
Nanomaterials are capable of generating reactive oxygen species (ROS) due to defect-induced electron...
Oxidative stress-dependent inflammatory diseases represent a major concern for the population’s heal...
SARS-CoV-2 has caused up to 127 million cases of COVID-19. Approximately 5% of COVID-19 patients dev...
Rheumatoid arthritis (RA) is a chronic and debilitating inflammatory condition characterized by join...
Reactive oxygen and nitrogen species play a critical role in many degenerative diseases and in aging...
The pharmacological therapy for gastrointestinal (GI) diseases, such as inflammatory bowel diseases,...
Stroke has a high rate of morbidity and disability, which seriously endangers human health. In strok...
In this study we present an overview of the recent results of a novel approach to antioxidant and an...
Nanoparticles are emerging as a useful tool for a wide variety of biomedical, consumer and instrumen...
Nanotechnology has made significant advances in the reduction of free radical damage in the field of...