Literature DB >> 27755352

Complete Reversion of Cardiac Functional Adaptation Induced by Exercise Training.

Attila Oláh1, Dalma Kellermayer, Csaba Mátyás, Balázs Tamás Németh, Árpád Lux, Lilla Szabó, Marianna Török, Mihály Ruppert, Anna Meltzer, Alex Ali Sayour, Kálmán Benke, István Hartyánszky, Béla Merkely, Tamás Radovits.   

Abstract

PURPOSE: Long-term exercise training is associated with characteristic cardiac adaptation, termed athlete's heart. Our research group previously characterized in vivo left ventricular (LV) function of exercise-induced cardiac hypertrophy in detail in a rat model; however, the effect of detraining on LV function is still unclear. We aimed at evaluating the reversibility of functional alterations of athlete's heart after detraining.
METHODS: Rats (n = 16) were divided into detrained exercised (DEx) and detrained control (DCo) groups. Trained rats swam 200 min·d for 12 wk, and control rats were taken into water for 5 min·d. After the training period, both groups remained sedentary for 8 wk. We performed echocardiography at weeks 12 and 20 to investigate the development and regression of exercise-induced structural changes. LV pressure-volume analysis was performed to calculate cardiac functional parameters. LV samples were harvested for histological examination.
RESULTS: Echocardiography showed robust LV hypertrophy after completing the training protocol (LV mass index = 2.61 ± 0.08 DEx vs 2.04 ± 0.04 g·kg DCo, P < 0.05). This adaptation regressed after detraining (LV mass index = 2.01 ± 0.03 vs 1.97 ± 0.05 g·kg, n.s.), which was confirmed by postmortem measured heart weight and histological morphometry. After the 8-wk-long detraining period, a regression of the previously described exercise-induced cardiac functional alterations was observed (DEx vs DCo): stroke volume (SV; 144.8 ± 9.0 vs 143.9 ± 9.6 μL, P = 0.949), active relaxation (τ = 11.5 ± 0.3 vs 11.3 ± 0.4 ms, P = 0.760), contractility (preload recruitable stroke work = 69.5 ± 2.7 vs 70.9 ± 2.4 mm Hg, P = 0.709), and mechanoenergetic (mechanical efficiency = 68.7 ± 1.2 vs 69.4 ± 1.8, P = 0.742) enhancement reverted completely to control values. Myocardial stiffness remained unchanged; moreover, no fibrosis was observed after the detraining period.
CONCLUSION: Functional consequences of exercise-induced physiological LV hypertrophy completely regressed after 8 wk of deconditioning.

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Year:  2017        PMID: 27755352     DOI: 10.1249/MSS.0000000000001127

Source DB:  PubMed          Journal:  Med Sci Sports Exerc        ISSN: 0195-9131            Impact factor:   5.411


  6 in total

1.  Long-term exercise results in morphological and biomechanical changes in coronary resistance arterioles in male and female rats.

Authors:  Marianna Török; Anna Monori-Kiss; Éva Pál; Eszter Horváth; Attila Jósvai; Petra Merkely; Bálint András Barta; Csaba Mátyás; Attila Oláh; Tamás Radovits; Béla Merkely; Nándor Ács; György László Nádasy; Szabolcs Várbíró
Journal:  Biol Sex Differ       Date:  2020-02-12       Impact factor: 5.027

2.  Increased Expression of N2BA Titin Corresponds to More Compliant Myofibrils in Athlete's Heart.

Authors:  Dalma Kellermayer; Bálint Kiss; Hedvig Tordai; Attila Oláh; Henk L Granzier; Béla Merkely; Miklós Kellermayer; Tamás Radovits
Journal:  Int J Mol Sci       Date:  2021-10-15       Impact factor: 5.923

3.  Regulation of collagen deposition in the trout heart during thermal acclimation.

Authors:  Elizabeth F Johnston; Todd E Gillis
Journal:  Curr Res Physiol       Date:  2022-02-11

Review 4.  Metabolic Mechanisms of Exercise-Induced Cardiac Remodeling.

Authors:  Kyle Fulghum; Bradford G Hill
Journal:  Front Cardiovasc Med       Date:  2018-09-11

5.  Increased Ca2+ content of the sarcoplasmic reticulum provides arrhythmogenic trigger source in swimming-induced rat athlete's heart model.

Authors:  Péter Gazdag; Kinga Oravecz; Károly Acsai; Vivien Demeter-Haludka; Balázs Ördög; Jozefina Szlovák; Zsófia Kohajda; Alexandra Polyák; Bálint András Barta; Attila Oláh; Tamás Radovits; Béla Merkely; Julius Gy Papp; István Baczkó; András Varró; Norbert Nagy; János Prorok
Journal:  Sci Rep       Date:  2020-11-11       Impact factor: 4.379

6.  Balanced Intense Exercise Training Induces Atrial Oxidative Stress Counterbalanced by the Antioxidant System and Atrial Hypertrophy That Is Not Associated with Pathological Remodeling or Arrhythmogenicity.

Authors:  Attila Oláh; Bálint András Barta; Alex Ali Sayour; Mihály Ruppert; Eszter Virág-Tulassay; Julianna Novák; Zoltán V Varga; Péter Ferdinandy; Béla Merkely; Tamás Radovits
Journal:  Antioxidants (Basel)       Date:  2021-03-15
  6 in total

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