Melatonin alleviates myocardial dysfunction through inhibition of endothelial‐to‐mesenchymal transition via the NF‐κB pathway

Author:

Kim Ran1,Kim Minsuk1,Jeong Seongtae2,Kim Sejin1,Moon Hanbyeol2,Kim Hojin2,Lee Min Young3,Kim Jongmin4,Kim Hyung‐Sik5,Choi Murim6,Shin Kunyoo7,Song Byeong‐Wook2,Chang Woochul1

Affiliation:

1. Department of Biology Education, College of Education Pusan National University Busan South Korea

2. Institute for Bio‐Medical Convergence Catholic Kwandong University International St. Mary's Hospital Incheon South Korea

3. Department of Molecular Physiology, College of Pharmacy Kyungpook National University Daegu South Korea

4. Department of Life Systems Sookmyung Women's University Seoul Korea

5. Department of Oral Biochemistry, Dental and Life Science Institute, School of Dentistry Pusan National University Yangsan South Korea

6. Department of Biomedical Sciences Seoul National University College of Medicine Seoul South Korea

7. School of Biological Sciences, College of Natural Sciences Seoul National University Seoul South Korea

Abstract

AbstractEndothelial‐to‐mesenchymal transition (EndMT) is a complex biological process of cellular transdifferentiation by which endothelial cells (ECs) lose their characteristics and acquire mesenchymal properties, leading to cardiovascular remodeling and complications in the adult cardiovascular diseases environment. Melatonin is involved in numerous physiological and pathological processes, including aging, and has anti‐inflammatory and antioxidant activities. This molecule is an effective therapeutic candidate for preventing oxidative stress, regulating endothelial function, and maintaining the EndMT balance to provide cardiovascular protection. Although recent studies have documented improved cardiac function by melatonin, the mechanism of action of melatonin on EndMT remains unclear. The present study investigated the effects of melatonin on induced EndMT by transforming growth factor‐β2/interleukin‐1β in both in vivo and in vitro models. The results revealed that melatonin reduced the migratory ability and reactive oxygen species levels of the cells and ameliorated mitochondrial dysfunction in vitro. Our findings indicate that melatonin prevents endothelial dysfunction and inhibits EndMT by activating related pathways, including nuclear factor kappa B and Smad. We also demonstrated that this molecule plays a crucial role in restoring cardiac function by regulating the EndMT process in the ischemic myocardial condition, both in vessel organoids and myocardial infarction (MI) animal models. In conclusion, melatonin is a promising agent that attenuates EC dysfunction and ameliorates cardiac damage compromising the EndMT process after MI.

Funder

National Research Foundation of Korea

Publisher

Wiley

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