Impairment of the adrenergic reserve associated with exercise intolerance in a murine model of heart failure with preserved ejection fraction

Author:

Semmler Lukas12ORCID,Jeising Tobias12,Huettemeister Judith12,Bathe‐Peters Marc34,Georgoula Konstantina3,Roshanbin Rashin1,Sander Paulina12,Fu Shu12,Bode David12,Hohendanner Felix12,Pieske Burkert5,Annibale Paolo34,Schiattarella Gabriele G.126,Oeing Christian U.12ORCID,Heinzel Frank R.127ORCID

Affiliation:

1. Department of Internal Medicine and Cardiology German Heart Center Charité (DHZC) – Campus Virchow‐Klinikum Berlin Germany

2. German Center for Cardiovascular Research (DZHK), Partner Site Berlin Berlin Germany

3. Receptor Signalling Group Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC) Berlin Germany

4. School of Physics and Astronomy University of St Andrews St Andrews UK

5. Division of Cardiology, Department of Internal Medicine University Medicine Rostock Rostock Germany

6. Translational Approaches in Heart Failure and Cardiometabolic Disease Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC) Berlin Germany

7. 2. Medizinische Klinik – Kardiologie, Angiologie, Intensivmedizin, Städtisches Klinikum Dresden Dresden Germany

Abstract

AbstractAimExercise intolerance is the central symptom in patients with heart failure with preserved ejection fraction. In the present study, we investigated the adrenergic reserve both in vivo and in cardiomyocytes of a murine cardiometabolic HFpEF model.Methods12‐week‐old male C57BL/6J mice were fed regular chow (control) or a high‐fat diet and L‐NAME (HFpEF) for 15 weeks. At 27 weeks, we performed (stress) echocardiography and exercise testing and measured the adrenergic reserve and its modulation by nitric oxide and reactive oxygen species in left ventricular cardiomyocytes.ResultsHFpEF mice (preserved left ventricular ejection fraction, increased E/e', pulmonary congestion [wet lung weight/TL]) exhibited reduced exercise capacity and a reduction of stroke volume and cardiac output with adrenergic stress. In ventricular cardiomyocytes isolated from HFpEF mice, sarcomere shortening had a higher amplitude and faster relaxation compared to control animals. Increased shortening was caused by a shift of myofilament calcium sensitivity. With addition of isoproterenol, there were no differences in sarcomere function between HFpEF and control mice. This resulted in a reduced inotropic and lusitropic reserve in HFpEF cardiomyocytes. Preincubation with inhibitors of nitric oxide synthases or glutathione partially restored the adrenergic reserve in cardiomyocytes in HFpEF.ConclusionIn this murine HFpEF model, the cardiac output reserve on adrenergic stimulation is impaired. In ventricular cardiomyocytes, we found a congruent loss of the adrenergic inotropic and lusitropic reserve. This was caused by increased contractility and faster relaxation at rest, partially mediated by nitro‐oxidative signaling.

Funder

Deutsche Forschungsgemeinschaft

Deutsches Zentrum für Herz-Kreislaufforschung

Publisher

Wiley

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