Altered mitochondrial DNA (mtDNA) methylation has been detected in several human pathologies, although little attention has been given to neurodegenerative diseases. Recently, altered methylation levels of the mitochondrial displacement loop (D-loop) region, which regulates mtDNA replication, were observed in peripheral blood cells of Alzheimer’s disease and amyotrophic lateral sclerosis patients. However, nothing is yet known about D-loop region methylation levels in peripheral blood of Parkinson’s disease (PD) patients. In the current study, we investigated D-loop methylation levels and mtDNA copy number in peripheral blood of 30 PD patients and 30 age-and sex-matched control subjects. DNA methylation analyses have been performed by means...
While DNA methylation is established as a major regulator of gene expression in the nucleus, the exi...
Epigenetic modifications of the nuclear genome, including DNA methylation, histone modifications and...
The objective of this study was to compare baseline whole blood DNA methylation in unmedicated spora...
Altered mitochondrial DNA (mtDNA) methylation has been detected in several human pathologies, althou...
Mitochondrial impairment is a feature of neurodegeneration and many investigators have suggested tha...
Parkinson’s disease (PD) pathophysiology includes mitochondrial dysfunction, neuroinflammation, and ...
Background: Mitochondrial dysregulation and aberrant epigenetic mechanisms have been frequently repo...
Epigenetic alterations represent a sort of functional modifications related to the genome that are n...
Methylation levels of the mitochondrial displacement loop (D-loop) region have been reported to be a...
Aim: Impaired methylation of the mitochondrial DNA and particularly in the regulatory displacement l...
Neurodegenerative diseases (NDs) represent a group of disorders characterized by the progressive ne...
AIM: To investigate mitochondrial DNA (mtDNA) copy number and D-loop region methylation in carriers...
Abstract Background Several articles suggest that DNA methylation levels in blood relate to Parkinso...
Mitochondrial dysfunctions are significant contributors to neurodegeneration. One result or a cause ...
Mitochondrial impairment and increased oxidative stress are common features in neurodegenerative dis...
While DNA methylation is established as a major regulator of gene expression in the nucleus, the exi...
Epigenetic modifications of the nuclear genome, including DNA methylation, histone modifications and...
The objective of this study was to compare baseline whole blood DNA methylation in unmedicated spora...
Altered mitochondrial DNA (mtDNA) methylation has been detected in several human pathologies, althou...
Mitochondrial impairment is a feature of neurodegeneration and many investigators have suggested tha...
Parkinson’s disease (PD) pathophysiology includes mitochondrial dysfunction, neuroinflammation, and ...
Background: Mitochondrial dysregulation and aberrant epigenetic mechanisms have been frequently repo...
Epigenetic alterations represent a sort of functional modifications related to the genome that are n...
Methylation levels of the mitochondrial displacement loop (D-loop) region have been reported to be a...
Aim: Impaired methylation of the mitochondrial DNA and particularly in the regulatory displacement l...
Neurodegenerative diseases (NDs) represent a group of disorders characterized by the progressive ne...
AIM: To investigate mitochondrial DNA (mtDNA) copy number and D-loop region methylation in carriers...
Abstract Background Several articles suggest that DNA methylation levels in blood relate to Parkinso...
Mitochondrial dysfunctions are significant contributors to neurodegeneration. One result or a cause ...
Mitochondrial impairment and increased oxidative stress are common features in neurodegenerative dis...
While DNA methylation is established as a major regulator of gene expression in the nucleus, the exi...
Epigenetic modifications of the nuclear genome, including DNA methylation, histone modifications and...
The objective of this study was to compare baseline whole blood DNA methylation in unmedicated spora...