Among the pathogenic mechanisms underlying central nervous system (CNS) diseases, oxidative stress is almost invariably described. For this reason, numerous attempts have been made to decrease reactive oxygen species (ROS) with the administration of antioxidants as potential therapies for CNS disorders. However, such treatments have always failed in clinical trials. Targeting specific sources of reactive oxygen species in the CNS (e.g. NOX enzymes) represents an alternative promising option. Indeed, NOX enzymes are major generators of ROS, which regulate progression of CNS disorders as diverse as amyotrophic lateral sclerosis, schizophrenia, Alzheimer disease, Parkinson disease, and stroke. On the other hand, in autoimmune demyelinating dis...
Chronic oxidative stress and oxidative damage of the cerebral microvasculature and brain cells has b...
Oxidative stress-related diseases underlie many if not all of the major leading causes of death in U...
Chronic oxidative stress and oxidative damage of the cerebral microvasculature and brain cells has b...
Among the pathogenic mechanisms underlying central nervous system (CNS) diseases, oxidative stress i...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
For a number of years, nicotinamide adenine dinucleotide phosphate (NADPH) oxidases (NOX) was synony...
Oxidative stress is a pathological feature common to a multitude of neurological diseases. The produ...
Neurodegenerative disease are frequently characterized by microglia activation and/or leukocyte infi...
The members of the NOX/DUOX family of NADPH oxidases mediate such physiologic functions as host defe...
Oxidative stress is a pathological feature common to a multitude of neurological diseases. The produ...
There are multiple mechanisms of pathogenic factors in dementia and ischemic-reperfusion injury, suc...
Chronic oxidative stress and oxidative damage of the cerebral microvasculature and brain cells has b...
Oxidative stress-related diseases underlie many if not all of the major leading causes of death in U...
Chronic oxidative stress and oxidative damage of the cerebral microvasculature and brain cells has b...
Among the pathogenic mechanisms underlying central nervous system (CNS) diseases, oxidative stress i...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
Oxidative stress is a key player in both chronic and acute brain disease due to the higher metabolic...
For a number of years, nicotinamide adenine dinucleotide phosphate (NADPH) oxidases (NOX) was synony...
Oxidative stress is a pathological feature common to a multitude of neurological diseases. The produ...
Neurodegenerative disease are frequently characterized by microglia activation and/or leukocyte infi...
The members of the NOX/DUOX family of NADPH oxidases mediate such physiologic functions as host defe...
Oxidative stress is a pathological feature common to a multitude of neurological diseases. The produ...
There are multiple mechanisms of pathogenic factors in dementia and ischemic-reperfusion injury, suc...
Chronic oxidative stress and oxidative damage of the cerebral microvasculature and brain cells has b...
Oxidative stress-related diseases underlie many if not all of the major leading causes of death in U...
Chronic oxidative stress and oxidative damage of the cerebral microvasculature and brain cells has b...