Translational Medicine II. (Poster discussion will take place in the Aula during the Coffee Break)
Dr. Barta, Bálint András
Heart and Vascular Center, Faculty of Medicine, Semmelweis University, Budapest, Hungary
+36206632490
barta.balint@gmail.com
Sex-related proteomic differences of the athlete’s heart
Bálint András Barta1, Olívia Bottlik1, Mihály Ruppert1, Alex Ali Sayour1, Béla Merkely1, Oliver Schilling2, Tamás Radovits1, Attila Oláh1
1Heart and Vascular Center, Faculty of Medicine, Semmelweis University, Budapest, Hungary
2Institute of Surgical Pathology, Faculty of Medicine, University of Freiburg Medical Center, Freiburg, Germany
Szóbeli
Translational Medicine II. (Poster discussion will take place in the Aula during the Coffee Break)
English
Theoretical and Translational Medicine
Introduction: Regular physical activity results in characteristic structural and functional changes in the heart, which are collectively referred to as the athlete’s heart. However, the extent of exercise-induced left ventricular (LV) hypertrophy and functional changes show significant differences between men and women, the molecular background of which is not fully elucidated.
Objective: The aim of this study was to provide a proteomic characterization of long-term, intense exercise-induced LV myocardial hypertrophy in a rat model, with a focus on sex-related differences.
Methods: Our rats were divided into trained (FEx) and control female (FCo) as well as trained (MEx) and control male (MCo) groups. In the trained groups, athlete’s heart was induced by swimming for 12 weeks. Myocardial hypertrophy was confirmed by cardiac ultrasound and functional adaptation by pressure-volume analysis. Proteomic measurements based on liquid chromatograph-coupled mass spectrometry were performed on proteins isolated from our left ventricular samples.
Results: Echocardiography and post-mortem myocardial mass showed significant LV hypertrophy in both sexes, which was more pronounced in female animals (tibial length normalized LV muscle mass: + 17.4% MEx vs. MCo, + 31.0% FEx vs. FCo). LV contractility has increased to the same extent in both sexes. Relative expression of 3074 proteins were determined by proteomics. There was a significant change in expression of 229 proteins in males and 599 in females compared to the level of same-sex controls. Based on our gene ontological analysis, physiological LV remodeling in females is characterized by increased expression of proteins in cellular respiration and fatty acid oxidation, whereas in males, proteins that bind to the actin cytoskeleton is primarily increased.
Conclusions: Our data suggests that physiological LV hypertrophy resulting from regular, balanced exercise is associated with sex-specific changes in the myocardial proteome. Our results contribute to the understanding of the development of physiological myocardial hypertrophy.
Funding: BO/00837/21 to A.O., K135076 to B.M., SE250+ to B.A.B.
Semmelweis University, Doctoral School of Theoretical and Translational Medicine
Tamás Radovits MD, PhD
I give consent to the publication of my abstract on the website of the congress.
Szabad
elfogadva
szóbeli
nem rendelkezett róla
5886
12:00
12:15
Bálint András Barta1, Olívia Bottlik1, Mihály Ruppert1, Alex Ali Sayour1, Béla Merkely1, Oliver Schilling2, Tamás Radovits1, Attila Oláh1
1Heart and Vascular Center, Faculty of Medicine, Semmelweis University, Budapest, Hungary
2Institute of Surgical Pathology, Faculty of Medicine, University of Freiburg Medical Center, Freiburg, Germany