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Epigenetic Regulation01:46

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Related Experiment Video

Updated: Feb 4, 2026

An Engineered Split-TET2 Enzyme for Chemical-inducible DNA Hydroxymethylation and Epigenetic Remodeling
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Epigenetic processing in cardiometabolic disease.

Sarah Costantino1, Shafeeq A Mohammed1, Samuele Ambrosini2

  • 1Center for Molecular Cardiology, University of Zürich, Switzerland.

Atherosclerosis
|October 7, 2018
PubMed
Summary
This summary is machine-generated.

Epigenetic modifications, or plastic chemical changes to DNA, regulate gene activity and play a key role in cardiometabolic diseases. Targeting these epigenetic changes offers a promising strategy for cardiovascular disease treatment.

Keywords:
CardiometabolismEpigeneticsInflammationObesityType 2 diabetes

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Area of Science:

  • Cardiovascular Science
  • Epigenetics
  • Metabolic Regulation

Background:

  • Gene regulation significantly impacts cardiometabolic health.
  • Non-genetic regulatory mechanisms, particularly epigenetics, are increasingly recognized for their role.

Purpose of the Study:

  • To review the role of chromatin modifications in cardiometabolic processes.
  • To highlight the potential of epigenetic targeting for cardiovascular disease.

Main Methods:

  • Review of current literature on epigenetic mechanisms in cardiometabolic disease.
  • Analysis of DNA methylation and histone modifications in key tissues and cell types.

Main Results:

  • Epigenetic changes fine-tune gene transcription in adipogenesis, insulin resistance, and inflammation.
  • Chromatin modifications influence endothelial function, immune cell polarization, and organ crosstalk.
  • Specific epigenetic changes are linked to adipose tissue inflammation, atherosclerosis, and metabolic cardiomyopathy.

Conclusions:

  • Cell-specific epigenetic information can improve cardiometabolic risk assessment and personalize treatments.
  • Targeting epigenetic modifications represents a promising therapeutic avenue for cardiovascular disease.