The majority of congenital heart defects (CHDs) are thought to result from the interaction between multiple genetic, epigenetic, environmental, and lifestyle factors. Epigenetic mechanisms are attractive targets in the study of complex diseases because they may be altered by environmental factors and dietary interventions. We conducted a population based, case-control study of genome-wide maternal DNA methylation to determine if alterations in gene-specific methylation were associated with CHDs. Using the Illumina Infinium Human Methylation27 BeadChip, we assessed maternal gene-specific methylation in over 27,000 CpG sites from DNA isolated from peripheral blood lymphocytes. Our study sample included 180 mothers with non-syndromic CHD-affec...
Epigenetic processes, including DNA methylation (DNAm), are among the mechanisms allowing integratio...
Epigenetic modifications, including DNA methylation, represent a potential mechanism for environment...
Epigenetic modifications, including DNA methylation, represent a potential mechanism for environment...
During the last decade, quantitative measurement of the methylation status in white blood cells (WBC...
Congenital heart defects represent the most common malformation at birth, occurring also in ∼50% of ...
Background: Down syndrome (DS) is one of the most common chromosomal abnormalities associated with c...
BackgroundMost congenital heart defects (CHDs) result from complex interactions among genetic suscep...
Evidence is growing for the long-term effects of environmental factors during early-life on later di...
Congenital heart defects (CHDs) develop through a complex interplay between genetic variants, epigen...
AIMS: For the majority of congenital heart diseases (CHDs), the full complexity of the causative mol...
Epigenetic processes, including DNA methylation (DNAm), are among the mechanisms allowing integratio...
The inheritance of DNA methylation patterns is a popular theory to explain the influence of parental...
Background Environmental exposures in utero which modify DNA methylation may have a...
Epigenetic processes, including DNA methylation (DNAm), are among the mechanisms allowing integratio...
Epigenetic modifications, including DNA methylation, represent a potential mechanism for environment...
Epigenetic modifications, including DNA methylation, represent a potential mechanism for environment...
During the last decade, quantitative measurement of the methylation status in white blood cells (WBC...
Congenital heart defects represent the most common malformation at birth, occurring also in ∼50% of ...
Background: Down syndrome (DS) is one of the most common chromosomal abnormalities associated with c...
BackgroundMost congenital heart defects (CHDs) result from complex interactions among genetic suscep...
Evidence is growing for the long-term effects of environmental factors during early-life on later di...
Congenital heart defects (CHDs) develop through a complex interplay between genetic variants, epigen...
AIMS: For the majority of congenital heart diseases (CHDs), the full complexity of the causative mol...
Epigenetic processes, including DNA methylation (DNAm), are among the mechanisms allowing integratio...
The inheritance of DNA methylation patterns is a popular theory to explain the influence of parental...
Background Environmental exposures in utero which modify DNA methylation may have a...
Epigenetic processes, including DNA methylation (DNAm), are among the mechanisms allowing integratio...
Epigenetic modifications, including DNA methylation, represent a potential mechanism for environment...
Epigenetic modifications, including DNA methylation, represent a potential mechanism for environment...