Cardiomyocyte and endothelial cells play distinct roles in the tumour necrosis factor (TNF)-dependent atrial responses and increased atrial fibrillation vulnerability induced by endurance exercise training in mice

Author:

Lakin Robert1ORCID,Polidovitch Nazari1,Yang Sibao12,Parikh Mihir1,Liu Xueyan12,Debi Ryan1,Gao Xiaodong1,Chen Wenliang1,Guzman Camilo1,Yakobov Simona1,Izaddoustdar Farzad3,Wauchop Marianne3,Lei Qian4,Xu Weimin2,Nedospasov Sergei A56,Christoffels Vincent M7,Backx Peter H1ORCID

Affiliation:

1. Department of Biology, York University , 354 & 357 Farquharson Building, 4700 Keele Street, Toronto, ON M3J 1P3 , Canada

2. Department of Cardiology, China-Japan Union Hospital of Jilin University , Changchun, Jilin 130022 , China

3. Department of Physiology, University of Toronto , Toronto, ON M5S 3E2 , Canada

4. Department of Anesthesiology, Sichuan Academy of Medical Sciences and Sichuan Provincial People’s Hospital, University of Electronic Science and Technology of China , Chengdu 610072 , China

5. Laboratory of Molecular Mechanisms of Immunity, Engelhardt Institute of Molecular Biology , Moscow 119991 , Russia

6. Division of Immunobiology and Biomedicine, Sirius University of Science and Technology , Sirius 354349 , Russia

7. Department of Medical Biology, Amsterdam Cardiovascular Sciences, Amsterdam UMC , Amsterdam , The Netherlands

Abstract

Abstract Aims Endurance exercise is associated with an increased risk of atrial fibrillation (AF). We previously established that adverse atrial remodelling and AF susceptibility induced by intense exercise in mice require the mechanosensitive and pro-inflammatory cytokine tumour necrosis factor (TNF). The cellular and mechanistic basis for these TNF-mediated effects is unknown. Methods and results We studied the impact of Tnf excision, in either atrial cardiomyocytes or endothelial cells (using Cre-recombinase expression controlled by Nppa or Tie2 promoters, respectively), on the cardiac responses to six weeks of intense swim exercise training. TNF ablation, in either cell type, had no impact on the changes in heart rate, autonomic tone, or left ventricular structure and function induced by exercise training. Tnf excision in atrial cardiomyocytes did, however, prevent atrial hypertrophy, fibrosis, and macrophage infiltration as well as conduction slowing and increased AF susceptibility arising from exercise training. In contrast, endothelial-specific excision only reduced the training-induced atrial hypertrophy. Consistent with these cell-specific effects of Tnf excision, inducing TNF loss from atrial cardiomyocytes prevented activation of p38MAPKinase, a strain-dependent downstream mediator of TNF signalling, without affecting the atrial stretch as assessed by atrial pressures induced by exercise. Despite TNF’s established role in innate immune responses and inflammation, neither acute nor chronic exercise training caused measurable NLRP3 inflammasome activation. Conclusions Our findings demonstrate that adverse atrial remodelling and AF vulnerability induced by intense exercise require TNF in atrial cardiomyocytes whereas the impact of endothelial-derived TNF is limited to hypertrophy modulation. The implications of the cell autonomous effects of TNF and crosstalk between cells in the atria are discussed.

Funder

Canadian Institutes of Health Research

Canadian Foundation for Innovation

Foundation Leducq

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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