Reactive oxygen and nitrogen species have been implicated in diverse pathophysiological conditions, including inflammation, neurodegenerative diseases and cancer. Accumulating evidence indicates that oxidative damage to biomolecules including lipids, proteins and DNA, contributes to these diseases. Previous studies suggest roles of lipid peroxidation and oxysterols in the development of neurodegenerative diseases and inflammation-related cancer. Our recent studies identifying and characterizing carbonylated proteins reveal oxidative damage to heat shock proteins in neurodegenerative disease models and inflammation-related cancer, suggesting dysfunction in their antioxidative properties. In neurodegenerative diseases, DNA damage may not onl...
Abstract Background: Environmental toxins, nutritional discrepancies, genetic predispositions, and ...
Neuroinflammation and mitochondrial dysfunction are common features of chronic neurodegenerative dis...
Lipids, proteins and DNA in the central nervous system have a high sensitivity to oxidative stress. ...
Abstract: Reactive oxygen and nitrogen species have been implicated in diverse pathophysiological co...
Aging is one of the principal risk factors that play an important role in several human conditions a...
In several human diseases, such as cancer and neurodegenerative diseases, the levels of reactive oxy...
Increasing numbers of individuals suffer from neurodegenerative diseases, which are characterized by...
Neurodegenerative disorders affect almost 30 million individuals leading to disability and death. Th...
Oxidative stress has been associated to play a crucial role in the pathogenesis of many diseases, in...
Cancer initiation and progression has been linked to oxidative stress, a condition in which the bala...
Oxidative stress is proposed as a regulatory element in ageing and various neurological disorders. T...
Abstract: The aetiology of most neurodegenerative disorders is multifactorial and consists of an int...
Copyright © 2011 Varsha Shukla et al. This is an open access article distributed under the Creative ...
Age is the main risk factor for a number of human diseases, including neurodegenerative disorders su...
Neurodegenerative disorders constitute a substantial proportion of neurological diseases with signif...
Abstract Background: Environmental toxins, nutritional discrepancies, genetic predispositions, and ...
Neuroinflammation and mitochondrial dysfunction are common features of chronic neurodegenerative dis...
Lipids, proteins and DNA in the central nervous system have a high sensitivity to oxidative stress. ...
Abstract: Reactive oxygen and nitrogen species have been implicated in diverse pathophysiological co...
Aging is one of the principal risk factors that play an important role in several human conditions a...
In several human diseases, such as cancer and neurodegenerative diseases, the levels of reactive oxy...
Increasing numbers of individuals suffer from neurodegenerative diseases, which are characterized by...
Neurodegenerative disorders affect almost 30 million individuals leading to disability and death. Th...
Oxidative stress has been associated to play a crucial role in the pathogenesis of many diseases, in...
Cancer initiation and progression has been linked to oxidative stress, a condition in which the bala...
Oxidative stress is proposed as a regulatory element in ageing and various neurological disorders. T...
Abstract: The aetiology of most neurodegenerative disorders is multifactorial and consists of an int...
Copyright © 2011 Varsha Shukla et al. This is an open access article distributed under the Creative ...
Age is the main risk factor for a number of human diseases, including neurodegenerative disorders su...
Neurodegenerative disorders constitute a substantial proportion of neurological diseases with signif...
Abstract Background: Environmental toxins, nutritional discrepancies, genetic predispositions, and ...
Neuroinflammation and mitochondrial dysfunction are common features of chronic neurodegenerative dis...
Lipids, proteins and DNA in the central nervous system have a high sensitivity to oxidative stress. ...