Insulin resistance (IR) is a hallmark of type 2 diabetes, metabolic syndrome and cardiometabolic risk. An epigenetic phenomena such as DNA methylation might be involved in the onset and development of systemic IR. The aim of this study was to explore the genetic DNA methylation levels in peripheral white blood cells with the objective of identifying epigenetic signatures associated with IR measured by the Homeostatic Model Assessment of IR (HOMA-IR) following an epigenome-wide association study approach. DNA methylation levels were assessed using Infinium Methylation Assay (Illumina), and were associated with HOMA-IR values of participants from the Methyl Epigenome Network Association (MENA) project, finding statistical associations for at ...
BackgroundInsulin resistance (IR) is a well-established factor for breast cancer (BC) risk in postme...
AIMS/HYPOTHESIS: Type 2 diabetes is a complex metabolic disease with increasing prevalence worldwide...
OBJECTIVE To investigate the role of epigenetics in statins' diabetogenic effect comparing DNA me...
Insulin resistance (IR) is a hallmark of type 2 diabetes, metabolic syndrome and cardiometabolic ris...
under epigenetic control. This study examines the association between global DNA methylation and IR ...
Known genetic susceptibility loci for type 2 diabetes (T2D) explain only a small proportion of herit...
Epigenetic regulation has been postulated to affect glucose metabolism, insulin sensitivity and the ...
Epigenetic regulation has been postulated to affect glucose metabolism, insulin sensitivity and the ...
In this study, we review the current knowledge and recent insights on the role of epigenetic factors...
Aims/hypothesis: Development of type 2 diabetes depends on environmental and genetic factors. We inv...
Introduction: The prevalence of type 2 diabetes (T2D) and the metabolic syndrome (MetS) is increasin...
Diabetes mellitus is one of the most widespread diseases worldwide . About 381.8 million people have...
Insulin resistance (IR) is largely recognized as a unifying feature that underlies metabolic dysfunc...
AIMS/HYPOTHESIS: Type 2 diabetes is a complex metabolic disease with increasing prevalence worldwide...
Diabetes Publish Ahead of Print, published online October 29, 2013 Known genetic susceptibility loci...
BackgroundInsulin resistance (IR) is a well-established factor for breast cancer (BC) risk in postme...
AIMS/HYPOTHESIS: Type 2 diabetes is a complex metabolic disease with increasing prevalence worldwide...
OBJECTIVE To investigate the role of epigenetics in statins' diabetogenic effect comparing DNA me...
Insulin resistance (IR) is a hallmark of type 2 diabetes, metabolic syndrome and cardiometabolic ris...
under epigenetic control. This study examines the association between global DNA methylation and IR ...
Known genetic susceptibility loci for type 2 diabetes (T2D) explain only a small proportion of herit...
Epigenetic regulation has been postulated to affect glucose metabolism, insulin sensitivity and the ...
Epigenetic regulation has been postulated to affect glucose metabolism, insulin sensitivity and the ...
In this study, we review the current knowledge and recent insights on the role of epigenetic factors...
Aims/hypothesis: Development of type 2 diabetes depends on environmental and genetic factors. We inv...
Introduction: The prevalence of type 2 diabetes (T2D) and the metabolic syndrome (MetS) is increasin...
Diabetes mellitus is one of the most widespread diseases worldwide . About 381.8 million people have...
Insulin resistance (IR) is largely recognized as a unifying feature that underlies metabolic dysfunc...
AIMS/HYPOTHESIS: Type 2 diabetes is a complex metabolic disease with increasing prevalence worldwide...
Diabetes Publish Ahead of Print, published online October 29, 2013 Known genetic susceptibility loci...
BackgroundInsulin resistance (IR) is a well-established factor for breast cancer (BC) risk in postme...
AIMS/HYPOTHESIS: Type 2 diabetes is a complex metabolic disease with increasing prevalence worldwide...
OBJECTIVE To investigate the role of epigenetics in statins' diabetogenic effect comparing DNA me...