Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human molecular …, 2015 - academic.oup.com
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - lup.lub.lu.se
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg… - Human Molecular …, 2015 - search.ebscohost.com
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

[引用][C] Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of …

T Ronn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - cir.nii.ac.jp
Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA
expression patterns in human adipose tissue and identification of epigenetic biomarkers in …

[PDF][PDF] Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - Citeseer
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - portal.research.lu.se
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg… - Human molecular …, 2015 - pubmed.ncbi.nlm.nih.gov
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - europepmc.org
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of epigenetic …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - research.regionh.dk
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …

[PDF][PDF] Impact of age, BMI and HbA1c levels on the genome-wide DNA methylation and mRNA expression patterns in human adipose tissue and identification of …

T Rönn, P Volkov, L Gillberg, M Kokosar… - Human Molecular …, 2015 - scholar.archive.org
Increased age, BMI and HbA1c levels are risk factors for several non-communicable
diseases. However, the impact of these factors on the genome-wide DNA methylation …