The human brain requires a high rate of oxygen consumption to perform intense metabolic activities, accounting for 20% of total body oxygen consumption. This high oxygen uptake results in the generation of free radicals, including reactive oxygen species (ROS), which, at physiological levels, are beneficial to the proper functioning of fundamental cellular processes. At supraphysiological levels, however, ROS and associated lesions cause detrimental effects in brain cells, commonly observed in several neurodegenerative disorders. In this review, we focus on the impact of oxidative DNA base lesions and the role of DNA glycosylase enzymes repairing these lesions on brain function and disease. Furthermore, we discuss the role of DNA base oxida...
7,8-Dihydro-8-oxoguanine DNA glycosylase (OGG1) is a major DNA glycosylase involved in base-excision...
A genetic link between defects in DNA repair and neurological abnormalities has been well establishe...
The DNA molecule is susceptible to damage induced by cellular metabolites and exogenous DNA damaging...
The human brain requires a high rate of oxygen consumption to perform intense metabolic activities, ...
9-15Free radicals are produced in cells by cellular metabolism and by exogenous agents. These specie...
Base excision repair (BER) is the primary pathway for repair of oxidative DNA damage caused by vario...
Oxidative stress involving reactive oxygen species (ROS) and reactive nitrogen species (RNS) is inte...
As mitochondria are vulnerable to oxidative damage and represent the main source of reactive oxygen ...
Increasing numbers of individuals suffer from neurodegenerative diseases, which are characterized by...
Abstract. Increasing evidence suggests that the repair of DNAlesions, particularly oxidative DNA les...
The repair of damaged DNA is essential to maintain longevity of an organism. The brain is a matrix o...
Oxidative DNA damage is produced by reactive oxygen species (ROS) which are generated by exogenous a...
This project aimed to investigate the hypothesis that oxidative DNA damage has a role in neuronal dy...
Oxidative DNA damage is produced by reactive oxygen species (ROS) which are generated by exogenous a...
Aims: Increasing evidence suggests a role for oxidative damage to DNA in brain ageing and in neurode...
7,8-Dihydro-8-oxoguanine DNA glycosylase (OGG1) is a major DNA glycosylase involved in base-excision...
A genetic link between defects in DNA repair and neurological abnormalities has been well establishe...
The DNA molecule is susceptible to damage induced by cellular metabolites and exogenous DNA damaging...
The human brain requires a high rate of oxygen consumption to perform intense metabolic activities, ...
9-15Free radicals are produced in cells by cellular metabolism and by exogenous agents. These specie...
Base excision repair (BER) is the primary pathway for repair of oxidative DNA damage caused by vario...
Oxidative stress involving reactive oxygen species (ROS) and reactive nitrogen species (RNS) is inte...
As mitochondria are vulnerable to oxidative damage and represent the main source of reactive oxygen ...
Increasing numbers of individuals suffer from neurodegenerative diseases, which are characterized by...
Abstract. Increasing evidence suggests that the repair of DNAlesions, particularly oxidative DNA les...
The repair of damaged DNA is essential to maintain longevity of an organism. The brain is a matrix o...
Oxidative DNA damage is produced by reactive oxygen species (ROS) which are generated by exogenous a...
This project aimed to investigate the hypothesis that oxidative DNA damage has a role in neuronal dy...
Oxidative DNA damage is produced by reactive oxygen species (ROS) which are generated by exogenous a...
Aims: Increasing evidence suggests a role for oxidative damage to DNA in brain ageing and in neurode...
7,8-Dihydro-8-oxoguanine DNA glycosylase (OGG1) is a major DNA glycosylase involved in base-excision...
A genetic link between defects in DNA repair and neurological abnormalities has been well establishe...
The DNA molecule is susceptible to damage induced by cellular metabolites and exogenous DNA damaging...