Alzheimer's disease (AD) is the most common form of dementia in the elderly. This neurodegenerative disorder is clinically characterized by impairment of cognitive functions and changes in behaviour and personality. The pathogenesis of AD is still unclear. Recent evidence supports some role of mitochondria dysfunction and oxidative stress in the development of the neurodegenerative process. In this review, we discuss the role of mitochondrial dysfunction in AD, focusing on the mechanisms that lead to mitochondrial impairment, oxidative stress, and neurodegeneration, a "vicious circle" that ends in dementia
The "mitochondrial cascade hypothesis" could explain many of the biochemical, genetic and pathologic...
Mitochondria are crucial regulators of energy metabolism and apoptotic pathways and have been closel...
Abstract. Mitochondria are crucial regulators of energy metabolism and apoptotic pathways and have b...
To date, the beta amyloid (Abeta) cascade hypothesis remains the main pathogenetic model of Alzheime...
Mitochondria are recognized to play a pivotal role in neuronal cell survival or death because they a...
This review presents and discusses evidence demonstrating the importance of mitochondria and related...
Alzheimer's disease (AD) is a multifactorial disorder characterized by the progressive deterioration...
Mitochondrial dysfunction is now recognized as a contributing factor to neurodegenerative diseases, ...
Alzheimer’s disease (AD) patients display widespread mitochondrial defects. Brain hypometaboli...
There is substantial evidence of morphological, biochemical and molecular abnormalities in mitochond...
Abstract It is widely recognized that Alzheimer's disease (AD) is a common type of progressive neuro...
Many lines of evidence suggest that mitochondria have a central role in ageing-related neurodegenera...
To date, the beta amyloid (Abeta) cascade hypothesis remains the main pathogenetic model of Alzheime...
There is substantial evidence of morphological, biochemical and molecular abnormalities in mitochond...
AbstractMitochondria are uniquely poised to play a pivotal role in neuronal cell survival or death b...
The "mitochondrial cascade hypothesis" could explain many of the biochemical, genetic and pathologic...
Mitochondria are crucial regulators of energy metabolism and apoptotic pathways and have been closel...
Abstract. Mitochondria are crucial regulators of energy metabolism and apoptotic pathways and have b...
To date, the beta amyloid (Abeta) cascade hypothesis remains the main pathogenetic model of Alzheime...
Mitochondria are recognized to play a pivotal role in neuronal cell survival or death because they a...
This review presents and discusses evidence demonstrating the importance of mitochondria and related...
Alzheimer's disease (AD) is a multifactorial disorder characterized by the progressive deterioration...
Mitochondrial dysfunction is now recognized as a contributing factor to neurodegenerative diseases, ...
Alzheimer’s disease (AD) patients display widespread mitochondrial defects. Brain hypometaboli...
There is substantial evidence of morphological, biochemical and molecular abnormalities in mitochond...
Abstract It is widely recognized that Alzheimer's disease (AD) is a common type of progressive neuro...
Many lines of evidence suggest that mitochondria have a central role in ageing-related neurodegenera...
To date, the beta amyloid (Abeta) cascade hypothesis remains the main pathogenetic model of Alzheime...
There is substantial evidence of morphological, biochemical and molecular abnormalities in mitochond...
AbstractMitochondria are uniquely poised to play a pivotal role in neuronal cell survival or death b...
The "mitochondrial cascade hypothesis" could explain many of the biochemical, genetic and pathologic...
Mitochondria are crucial regulators of energy metabolism and apoptotic pathways and have been closel...
Abstract. Mitochondria are crucial regulators of energy metabolism and apoptotic pathways and have b...