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Melatonin mitigates the adverse effect of hypoxia during myocardial differentiation in mouse embryonic stem cells
- Source :
- Journal of Veterinary Science
- Publication Year :
- 2021
- Publisher :
- The Korean Society of Veterinary Science, 2021.
-
Abstract
- Background Hypoxia causes oxidative stress and affects cardiovascular function and the programming of cardiovascular disease. Melatonin promotes antioxidant enzymes such as superoxide dismutase, glutathione reductase, glutathione peroxidase, and catalase. Objectives This study aims to investigate the correlation between melatonin and hypoxia induction in cardiomyocytes differentiation. Methods Mouse embryonic stem cells (mESCs) were induced to myocardial differentiation. To demonstrate the influence of melatonin under hypoxia, mESC was pretreated with melatonin and then cultured in hypoxic condition. The cardiac beating ratio of the mESC-derived cardiomyocytes, mRNA and protein expression levels were investigated. Results Under hypoxic condition, the mRNA expression of cardiac-lineage markers (Brachyury, Tbx20, and cTn1) and melatonin receptor (Mtnr1a) was reduced. The mRNA expression of cTn1 and the beating ratio of mESCs increased when melatonin was treated simultaneously with hypoxia, compared to when only exposed to hypoxia. Hypoxia-inducible factor (HIF)-1α protein decreased with melatonin treatment under hypoxia, and Mtnr1a mRNA expression increased. When the cells were exposed to hypoxia with melatonin treatment, the protein expressions of phospho-extracellular signal-related kinase (p-ERK) and Bcl-2-associated X proteins (Bax) decreased, however, the levels of phospho-protein kinase B (p-Akt), phosphatidylinositol 3-kinase (PI3K), B-cell lymphoma 2 (Bcl-2) proteins, and antioxidant enzymes including Cu/Zn-SOD, Mn-SOD, and catalase were increased. Competitive melatonin receptor antagonist luzindole blocked the melatonin-induced effects. Conclusions This study demonstrates that hypoxia inhibits cardiomyocytes differentiation and melatonin partially mitigates the adverse effect of hypoxia in myocardial differentiation by regulating apoptosis and oxidative stress through the p-AKT and PI3K pathway.
- Subjects :
- medicine.medical_specialty
Glutathione reductase
cardiomyocytes
Apoptosis
mESCs
medicine.disease_cause
Melatonin receptor
Melatonin
Internal medicine
medicine
Animals
Myocytes, Cardiac
Embryonic Stem Cells
chemistry.chemical_classification
Molecular and Cellular Biology
General Veterinary
hypoxia
Chemistry
Glutathione peroxidase
Cell Differentiation
Heart
Hypoxia (medical)
Oxygen
Endocrinology
Gene Expression Regulation
Original Article
medicine.symptom
Luzindole
Biomarkers
hormones, hormone substitutes, and hormone antagonists
Oxidative stress
medicine.drug
Subjects
Details
- ISSN :
- 1976555X and 1229845X
- Volume :
- 22
- Database :
- OpenAIRE
- Journal :
- Journal of Veterinary Science
- Accession number :
- edsair.doi.dedup.....39dc47a4ee6ca679a867e2d0c5ee35e5
- Full Text :
- https://doi.org/10.4142/jvs.2021.22.e54