Bioenergetic and mitochondrial dysfunction are common hallmarks of neurodegenerative diseases. Decades of research describe how genetic and environmental factors initiate changes in mitochondria and bioenergetics across Alzheimer’s disease (AD), Parkinson’s disease (PD), and amyotrophic lateral sclerosis (ALS). Mitochondria control many cellular processes, including proteostasis, inflammation, and cell survival/death. These cellular processes and pathologies are common across neurodegenerative diseases. Evidence suggests that mitochondria and bioenergetic disruption may drive pathological changes, placing mitochondria as an upstream causative factor in neurodegenerative disease onset and progression. Here, we discuss evidence of mitochondri...
International audienceBioenergetic homeostasis is a vital process maintaining cellular health and ha...
Neurodegenerative diseases are incurable and devastating neurological disorders characterized by the...
Abstract The cellular and molecular mechanisms that drive neurodegeneration remain poorly defined. R...
Many lines of evidence suggest that mitochondria have a central role in ageing-related neurodegenera...
Mitochondria are implicated in several metabolic pathways including cell respiratory processes, apop...
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...
Alzheimer’s disease (AD), Parkinson’s disease (PD) and amyotrophic lateral sclerosis (ALS) are the m...
Mitochondria are implicated in several metabolic pathways including cell respiratory processes, apop...
Fundamental organelles that occur in every cell type with the exception of mammal erythrocytes, the ...
Mitochondria are involved in ATP supply to cells through oxidative phosphorylation (OXPHOS), synthes...
As neurons are highly energy-demanding cell, increasing evidence suggests that mitochondria play a l...
Mitochondria are multifaceted organelles that serve to power critical neuronal functions. Additional...
Mitochondria are dynamic cellular organelles that consistently migrate, fuse, and divide to modulate...
AbstractA potential pivotal role for mitochondrial dysfunction in neurodegenerative diseases is gain...
International audienceBioenergetic homeostasis is a vital process maintaining cellular health and ha...
Neurodegenerative diseases are incurable and devastating neurological disorders characterized by the...
Abstract The cellular and molecular mechanisms that drive neurodegeneration remain poorly defined. R...
Many lines of evidence suggest that mitochondria have a central role in ageing-related neurodegenera...
Mitochondria are implicated in several metabolic pathways including cell respiratory processes, apop...
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...
Alzheimer’s disease (AD), Parkinson’s disease (PD) and amyotrophic lateral sclerosis (ALS) are the m...
Mitochondria are implicated in several metabolic pathways including cell respiratory processes, apop...
Fundamental organelles that occur in every cell type with the exception of mammal erythrocytes, the ...
Mitochondria are involved in ATP supply to cells through oxidative phosphorylation (OXPHOS), synthes...
As neurons are highly energy-demanding cell, increasing evidence suggests that mitochondria play a l...
Mitochondria are multifaceted organelles that serve to power critical neuronal functions. Additional...
Mitochondria are dynamic cellular organelles that consistently migrate, fuse, and divide to modulate...
AbstractA potential pivotal role for mitochondrial dysfunction in neurodegenerative diseases is gain...
International audienceBioenergetic homeostasis is a vital process maintaining cellular health and ha...
Neurodegenerative diseases are incurable and devastating neurological disorders characterized by the...
Abstract The cellular and molecular mechanisms that drive neurodegeneration remain poorly defined. R...