<div><p>Excessively generated reactive oxygen species are associated with age-related neurodegenerative diseases. We investigated whether scavenging of reactive oxygen species in the brain by orally administered redox nanoparticles, prepared by self-assembly of redox polymers possessing antioxidant nitroxide radicals, facilitates the recovery of cognition in 17-week-old senescence-accelerated prone (SAMP8) mice. The redox polymer was delivered to the brain after oral administration of redox nanoparticles via a disintegration of the nanoparticles in the stomach and absorption of the redox polymer at small intestine to the blood. After treatment for one month, levels of oxidative stress in the brain of SAMP8 mice were remarkably reduced by tr...
Long-term neurological complications, persisting in patients who cannot fully recover several months...
Stroke is currently one of the primary causes of morbidity and mortality worldwide. Unfortunately, t...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Excessively generated reactive oxygen species are associated with age-related neurode-generative dis...
<p>(A) Structures of redox polymers and RNP<sup>N</sup> and (B) illustration of delivery of redox po...
Free radicals are formed as a part of normal metabolic activities but are neutralized by the endogen...
Following a traumatic brain injury (TBI), excess reactive oxygen species (ROS) and lipid peroxidatio...
Redox regulation has recently been proposed as a critical intracellular mechanism affecting cell sur...
Many central nervous system (CNS) diseases are still incurable and only symptomatic treatments are a...
The secondary phase of traumatic brain injury (TBI) is partly caused by the release of excess reacti...
The present study aimed to assess whether our newly developed redox nanoparticle (RNPN) that has ant...
The efficacy, cellular uptake and specific transport of dietary antioxidants to target organs, tissu...
Parkinson’s disease (PD) patients can benefit from antioxidant supplementation, and new efficient an...
Nanomedicine, the offspring born from the marriage of nanotechnology and medicine, has already broug...
Following traumatic brain injury (TBI), excess reactive oxygen species (ROS) and other free radicals...
Long-term neurological complications, persisting in patients who cannot fully recover several months...
Stroke is currently one of the primary causes of morbidity and mortality worldwide. Unfortunately, t...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Excessively generated reactive oxygen species are associated with age-related neurode-generative dis...
<p>(A) Structures of redox polymers and RNP<sup>N</sup> and (B) illustration of delivery of redox po...
Free radicals are formed as a part of normal metabolic activities but are neutralized by the endogen...
Following a traumatic brain injury (TBI), excess reactive oxygen species (ROS) and lipid peroxidatio...
Redox regulation has recently been proposed as a critical intracellular mechanism affecting cell sur...
Many central nervous system (CNS) diseases are still incurable and only symptomatic treatments are a...
The secondary phase of traumatic brain injury (TBI) is partly caused by the release of excess reacti...
The present study aimed to assess whether our newly developed redox nanoparticle (RNPN) that has ant...
The efficacy, cellular uptake and specific transport of dietary antioxidants to target organs, tissu...
Parkinson’s disease (PD) patients can benefit from antioxidant supplementation, and new efficient an...
Nanomedicine, the offspring born from the marriage of nanotechnology and medicine, has already broug...
Following traumatic brain injury (TBI), excess reactive oxygen species (ROS) and other free radicals...
Long-term neurological complications, persisting in patients who cannot fully recover several months...
Stroke is currently one of the primary causes of morbidity and mortality worldwide. Unfortunately, t...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...