Related Experiment Video
Updated: Apr 22, 2026

Sample Preparation to Bioinformatics Analysis of DNA Methylation: Association Strategy for Obesity and Related Trait Studies
Published on: May 6, 2022
Obesity accelerates epigenetic aging of human liver
Steve Horvath1, Wiebke Erhart2, Mario Brosch3
1Departments of Human Genetics, David Geffen School of Medicine, and Biostatistics, School of Public Health, University of California Los Angeles, CA 90095; shorvath@mednet.ucla.edu.
Abstract:
Because of the dearth of biomarkers of aging, it has been difficult to test the hypothesis that obesity increases tissue age. Here we use a novel epigenetic biomarker of aging (referred to as an "epigenetic clock") to study the relationship between high body mass index (BMI) and the DNA methylation ages of human blood, liver, muscle, and adipose tissue. A significant correlation between BMI and epigenetic age acceleration could only be observed for liver (r = 0.42, P = 6.8 × 10(-4) in dataset 1 and r = 0.42, P = 1.2 × 10(-4) in dataset 2). On average, epigenetic age increased by 3.3 y for each 10 BMI units. The detected age acceleration in liver is not associated with the Nonalcoholic Fatty Liver Disease Activity Score or any of its component traits after adjustment for BMI. The 279 genes that are underexpressed in older liver samples are highly enriched (1.2 × 10(-9)) with nuclear mitochondrial genes that play a role in oxidative phosphorylation and electron transport. The epigenetic age acceleration, which is not reversible in the short term after rapid weight loss induced by bariatric surgery, may play a role in liver-related comorbidities of obesity, such as insulin resistance and liver cancer.
Related Concept Videos
Obesity
Pharmacokinetics in Obese Patients: Drug Metabolism and Excretion
Epigenetic Regulation
X-chromosome...
Epigenetic Regulation
Epigenetic Regulation
Pharmacokinetics in Obese Patients: Drug Absorption and Distribution

