Background: The mechanisms responsible for the cardiac dysfunction associated with dietary protein restriction (PR) are poorly understood. Thus, this study was designed to evaluate the effects of PR on calcium kinetics, basal and β-adrenergic contractility in murine ventricular cardiomyocytes.
Methods: After breastfeeding male Fisher rats were distributed into a control group (CG, n = 20) and a protein-restricted group (PRG, n = 20), receiving isocaloric diets for 35 days containing 15% and 6% protein, respectively. Biometric and hemodynamic variables were measured. After euthanasia left ventricles (LV) were collected for histopathological evaluation, SERCA2a expression, cardiomyocytes contractility and Ca(2+)sparks analysis.
Results: PRG animals showed reduced general growth, increased heart rate and arterial pressure. These animals presented extracellular matrix expansion and disorganization, cardiomyocytes hypotrophy, reduced amplitudes of shortening and maximum velocity of contraction and relaxation at baseline and after β-adrenergic stimulation. Reduced SERCA2a expression as well as higher frequency and lower amplitude of Ca(2+)sparks were observed in PRG cardiomyocytes.
Conclusion: The observations reveal that protein restriction induces marked myocardial morphofunctional damage. The pathological changes of cardiomyocyte mechanics suggest the potential involvement of the β-adrenergic system, which is possibly associated with changes in SERCA2a expression and disturbances in Ca(2+) intracellular kinetics.
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http://dx.doi.org/10.1159/000363013 | DOI Listing |
Acupunct Med
December 2024
Institute of Acupuncture and Meridian, Anhui University of Chinese Medicine, Hefei, China.
Objective: To determine the effect of electroacupuncture (EA) on β-adrenergic receptor (β-AR) and post-receptor protein kinase A (PKA) signaling pathway after acute myocardial ischemia (MI).
Methods: An MI model was established by ligating the left anterior descending coronary artery of wild-type (WT) C57/BL and β-AR mice (heterozygous for β-AR gene deletion). EA treatment was administered at HT5-HT7 or LU9-LU8.
Korean J Physiol Pharmacol
November 2024
Department of Korean Medical Science, School of Korean Medicine, Yangsan 50612, Korea.
Heart diseases are a significant contributor to global morbidity and mortality, and despite their diverse and complex mechanisms, treatment options remain limited. Maltol, a natural compound with antioxidant and anti-inflammatory activities, exhibits potential for addressing this need. This study evaluates the cardioprotective effects of maltol in isoproterenol (ISO)-induced cardiac stress models and Duchenne muscular dystrophy (DMD).
View Article and Find Full Text PDFEur J Pharmacol
December 2024
Department of Pharmacology, Yamaguchi University Graduate School of Medicine, 1-1-1 Minamikogushi, Ube, Yamaguchi, 755-8505, Japan.
The sarco (endo)plasmic reticulum Ca-ATPase 2a (SERCA2a)-phospholamban (PLN) system within the sarcoplasmic reticulum is crucial for regulating intracellular Ca cycling in ventricular cardiomyocytes. Given that impaired Ca cycling is associated with heart failure, modulating SERCA2a activity represents a promising therapeutic strategy. Previously, we engineered an RNA aptamer (Apt30) that binds to PLN, thereby activating SERCA2a by alleviating PLN's inhibitory effect.
View Article and Find Full Text PDFBiochem Pharmacol
December 2024
Department of Basic Medicine, Institute of Respiratory Diseases Xiamen Medical College of Respiratory Diseases, Xiamen Medical College, Xiamen, Fujian 361023, PR China. Electronic address:
This study aimed to investigate the role of ITFG2, a protein highly expressed in cardiac tissues, in myocardial ischemic injury and its potential interactions with NEDD4-2. An in vivo myocardial infarction (MI) model was induced in mice via left anterior descending artery ligation, and ITFG2 expression was modulated using adeno-associated virus AAV9 vectors. Echocardiography was used to assess cardiac function, and primary mouse cardiomyocytes were cultured and subjected to hypoxia.
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