The pharmaco-epigenetics of hypertension: a focus on microRNA.

Mol Cell Biochem

Department of Basic Medical Sciences, College of Medicine, QU Health, Qatar University, Doha, Qatar.

Published: December 2024

AI Article Synopsis

  • Hypertension is a serious condition that can lead to big health problems like heart attacks and strokes, and it's expected that 1.5 billion people will have it by 2025.
  • The causes of hypertension are complex and involve a variety of biological processes, including genes and certain molecules that can affect how our bodies respond to medications.
  • This review focuses on how specific tiny molecules called microRNA might influence the effectiveness of drugs used to treat high blood pressure, helping us understand how these medicines work better.

Article Abstract

Hypertension is a major harbinger of cardiovascular morbidity and mortality. It predisposes to higher rates of myocardial infarction, chronic kidney failure, stroke, and heart failure than most other risk factors. By 2025, the prevalence of hypertension is projected to reach 1.5 billion people. The pathophysiology of this disease is multifaceted, as it involves nitric oxide and endothelin dysregulation, reactive oxygen species, vascular smooth muscle proliferation, and vessel wall calcification, among others. With the advent of new biomolecular techniques, various studies have elucidated a gaping hole in the etiology and mechanisms of hypertension. Indeed, epigenetics, DNA methylation, histone modification, and microRNA-mediated translational silencing appear to play crucial roles in altering the molecular phenotype into a hypertensive profile. Here, we critically review the experimentally determined associations between microRNA (miRNA) molecules and hypertension pharmacotherapy. Particular attention is given to the epigenetic mechanisms underlying the physiological responses to antihypertensive drugs like candesartan, and other relevant drugs like clopidogrel, aspirin, and statins among others. Furthermore, how miRNA affects the pharmaco-epigenetics of hypertension is especially highlighted.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11511726PMC
http://dx.doi.org/10.1007/s11010-024-04947-9DOI Listing

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