Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold deposition and by surface functionalization with positive triphenylphosphonium units to selectively target the mitochondria. The antioxidant properties of these nanoparticles can serve as the basis of a new strategy for the treatment of several disorders exhibiting oxidative stress, such as cancer, diabetes or Alzheimer's disease. However, all of these pathologies require a specific antioxidant according with their mechanism to remove oxidant species excess in cells and diminish their effect on mitochondrial function. The mechanism through which ceria nanoparticles neutralize oxidative stress and their effect on mitochondrial function have not been c...
Evidence indicates that nitrosative stress and mitochondrial dysfunction participate in the pathogen...
Gold nanoparticles (AuNP) can increase the efficacy of radiation therapy by sensitising tumor cells ...
A major challenge in designing cancer therapies is the induction of cancer cell apoptosis, although ...
Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold depositi...
[EN] Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold dep...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Aim: Owing to their catalytic properties as reactive oxygen species scavengers, cerium oxide nanopar...
Ceria nanoparticles are well known as high-performance catalysts due to the presence of mixed valenc...
Oxidative stress is one of the main problems which affect the correct metabolism of the cell. It pro...
Nanotechnology promises a revolution in pharmacology to improve or create ex novo therapies. Cerium ...
Oxidative stress induced by reactive oxygen species (ROS) is one of the critical factors that involv...
Evidence indicates that nitrosative stress and mitochondrial dysfunction participate in the pathogen...
Oxidative stress induced by reactive oxygen species (ROS) is one of the critical factors that involv...
Evidence indicates that nitrosative stress and mitochondrial dysfunction participate in the pathogen...
Gold nanoparticles (AuNP) can increase the efficacy of radiation therapy by sensitising tumor cells ...
A major challenge in designing cancer therapies is the induction of cancer cell apoptosis, although ...
Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold depositi...
[EN] Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold dep...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including A...
Aim: Owing to their catalytic properties as reactive oxygen species scavengers, cerium oxide nanopar...
Ceria nanoparticles are well known as high-performance catalysts due to the presence of mixed valenc...
Oxidative stress is one of the main problems which affect the correct metabolism of the cell. It pro...
Nanotechnology promises a revolution in pharmacology to improve or create ex novo therapies. Cerium ...
Oxidative stress induced by reactive oxygen species (ROS) is one of the critical factors that involv...
Evidence indicates that nitrosative stress and mitochondrial dysfunction participate in the pathogen...
Oxidative stress induced by reactive oxygen species (ROS) is one of the critical factors that involv...
Evidence indicates that nitrosative stress and mitochondrial dysfunction participate in the pathogen...
Gold nanoparticles (AuNP) can increase the efficacy of radiation therapy by sensitising tumor cells ...
A major challenge in designing cancer therapies is the induction of cancer cell apoptosis, although ...