AbstractIt has long been recognized that energy metabolism is linked to the production of reactive oxygen species (ROS) and critical enzymes allied to metabolic pathways can be affected by redox reactions. This interplay between energy metabolism and ROS becomes most apparent during the aging process and in the onset and progression of many age-related diseases (i.e. diabetes, metabolic syndrome, atherosclerosis, neurodegenerative diseases). As such, the capacity to identify metabolic pathways involved in ROS formation, as well as specific targets and oxidative modifications is crucial to our understanding of the molecular basis of age-related diseases and for the design of novel therapeutic strategies.Herein we review oxidant formation ass...
SummaryReactive oxygen species are not only harmful agents that cause oxidative damage in pathologie...
Reactive Oxygen Species (ROS) can cause oxidative damage and have been proposed to be the main cause...
Reactive oxygen species (ROS) are versatile molecules that, even if produced in the background of ma...
AbstractIt has long been recognized that energy metabolism is linked to the production of reactive o...
In aged individuals, increased oxidative damage in cells leads to cellular decline and organ dysfunc...
Reactive oxygen and nitrogen species (RONS) are generated through various endogenous and exogenous p...
AbstractReactive oxygen species (ROS) are generated as the result of a number of physiological and p...
Oxidants are produced in physiological and pathological conditions. The production of reactive nitro...
Reactive oxygen species (ROS) and oxidative stress have long been linked to aging and diseases promi...
Constant formation of free radicals mainly reactive oxygen species (ROS) is the main characteristic ...
ROS were long considered one of the key players in tissue injury. Indeed, overproduction of ROS resu...
Ever since the discovery of free radicals, many hypotheses on the deleterious actions of reactive ox...
Aging is associated with the accumulation of cellular damage over the course of a lifetime. This pro...
Results reported in this Thesis contribute to the comprehension of the complicated world of “redox b...
Reactive Oxygen Species (ROS) can cause oxidative damage and have been proposed to be the main cause...
SummaryReactive oxygen species are not only harmful agents that cause oxidative damage in pathologie...
Reactive Oxygen Species (ROS) can cause oxidative damage and have been proposed to be the main cause...
Reactive oxygen species (ROS) are versatile molecules that, even if produced in the background of ma...
AbstractIt has long been recognized that energy metabolism is linked to the production of reactive o...
In aged individuals, increased oxidative damage in cells leads to cellular decline and organ dysfunc...
Reactive oxygen and nitrogen species (RONS) are generated through various endogenous and exogenous p...
AbstractReactive oxygen species (ROS) are generated as the result of a number of physiological and p...
Oxidants are produced in physiological and pathological conditions. The production of reactive nitro...
Reactive oxygen species (ROS) and oxidative stress have long been linked to aging and diseases promi...
Constant formation of free radicals mainly reactive oxygen species (ROS) is the main characteristic ...
ROS were long considered one of the key players in tissue injury. Indeed, overproduction of ROS resu...
Ever since the discovery of free radicals, many hypotheses on the deleterious actions of reactive ox...
Aging is associated with the accumulation of cellular damage over the course of a lifetime. This pro...
Results reported in this Thesis contribute to the comprehension of the complicated world of “redox b...
Reactive Oxygen Species (ROS) can cause oxidative damage and have been proposed to be the main cause...
SummaryReactive oxygen species are not only harmful agents that cause oxidative damage in pathologie...
Reactive Oxygen Species (ROS) can cause oxidative damage and have been proposed to be the main cause...
Reactive oxygen species (ROS) are versatile molecules that, even if produced in the background of ma...