Reciprocal organ interactions during heart failure: a position paper from the ESC Working Group on Myocardial Function

M. Ciccarelli, D. Dawson, I. Falcao-Pires, M. Giacca, N. Hamdani, S. Heymans, A. Hooghiemstra, A. Leeuwis, D. Hermkens, C.G. Tocchetti, J. van der Velden, S. Zacchigna, T. Thum*

*Corresponding author for this work

Research output: Contribution to journal(Systematic) Review article peer-review

Abstract

Heart failure-either with reduced or preserved ejection fraction (HFrEF/HFpEF)-is a clinical syndrome of multi-factorial and gender-dependent aetiology, indicating the insufficiency of the heart to pump blood adequately to maintain blood flow to meet the body's needs. Typical symptoms commonly include shortness of breath, excessive fatigue with impaired exercise capacity, and peripheral oedema, thereby alluding to the fact that heart failure is a syndrome that affects multiple organ systems. Patients suffering from progressed heart failure have a very limited life expectancy, lower than that of numerous cancer types. In this position paper, we provide an overview regarding interactions between the heart and other organ systems, the clinical evidence, underlying mechanisms, potential available or yet-to-establish animal models to study such interactions and finally discuss potential new drug interventions to be developed in the future. Our working group suggests that more experimental research is required to understand the individual molecular mechanisms underlying heart failure and reinforces the urgency for tailored therapeutic interventions that target not only the heart but also other related affected organ systems to effectively treat heart failure as a clinical syndrome that affects and involves multiple organs.
Original languageEnglish
Pages (from-to)2416-2433
Number of pages18
JournalCardiovascular Research
Volume117
Issue number12
DOIs
Publication statusPublished - 1 Nov 2021

Keywords

  • Heart failure
  • Multi-organ clinical syndrome
  • Lung
  • Intestine
  • Kidney
  • Brain
  • Adipose tissue
  • Liver
  • Non-coding RNAs
  • PERIVASCULAR ADIPOSE-TISSUE
  • PRESERVED EJECTION FRACTION
  • PULMONARY ARTERIAL-HYPERTENSION
  • MILD COGNITIVE IMPAIRMENT
  • SKELETAL-MUSCLE ATROPHY
  • CHAIN FATTY-ACIDS
  • GROWTH-FACTOR-I
  • EXERCISE INTOLERANCE
  • CARDIOVASCULAR-DISEASE
  • RAT MODEL

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