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Updated: Jul 9, 2026

Induction and Phenotyping of Acute Right Heart Failure in a Large Animal Model of Chronic Thromboembolic Pulmonary Hypertension
Published on: March 17, 2022
The pathophysiology of acute heart failure--is it all about fluid accumulation?
Gad Cotter1, G Michael Felker, Kirkwood F Adams
1Duke University Medical Center, the Duke Clinical Research Institute, Durham, NC 27715, USA. gad.cotter@duke.edu
Insights
Acute heart failure (AHF) understanding is evolving. New research suggests two subtypes: acute decompensated cardiac failure and acute vascular failure, challenging traditional views on fluid accumulation.
Area of Science:
- Cardiology
- Internal Medicine
Background:
- Chronic heart failure (HF) has seen advancements, but acute heart failure (AHF) pathophysiology, classification, and treatment remain poorly understood.
- Traditional views of AHF as solely gradual fluid accumulation are challenged by new data from diverse patient populations.
Purpose of the Study:
- To review current understanding of AHF pathophysiology.
- To propose a revised classification of AHF subtypes.
- To integrate pathophysiological mechanisms into a comprehensive AHF model.
Main Methods:
- Review of recent large patient registries.
- Critical evaluation of existing literature on AHF mechanisms.
- Synthesis of traditional and novel pathophysiological concepts.
Main Results:
- AHF may comprise two primary subtypes: acute decompensated cardiac failure and acute vascular failure.
- Acute vascular failure, characterized by hypertension and vascular stiffness, appears more prevalent in the general population.
- Elderly patients with preserved ejection fraction and no prior chronic HF are increasingly recognized in AHF syndromes.
Conclusions:
- The traditional understanding of AHF needs revision.
- A new framework distinguishing between cardiac and vascular failure is proposed.
- Further research is needed to elucidate the complex pathophysiological mechanisms underlying AHF subtypes.
Abstract:
Despite significant advancement in chronic heart failure (HF), no breakthroughs have occurred in the last 2 decades in our understanding of the pathophysiology, classification, and treatment of acute HF (AHF). Traditional thinking, which has been that this disorder is a result of gradual fluid accumulation on a background of chronic HF, has been called into question by recent large registries enrolling less selected patient populations. It is increasingly recognized that many patients with this syndrome are elderly, have relatively preserved ejection fraction, and have mild or no preexisting chronic HF. In this review, we propose 2 primary subtypes of AHF: (1) acute decompensated cardiac failure, characterized by deterioration of cardiac performance over days to weeks leading to decompensation; and (2) acute vascular failure, characterized by acute hypertension and increased vascular stiffness. Registry data suggest that the latter is the more common form of AHF in the general population, although the former is often overrepresented in studies focused in academic tertiary care centers. Regardless of the clinical subtype, a variety of pathophysiologic mechanisms may play a role in this disorder, many of which remain poorly understood. In this review, we describe current understanding of the pathophysiology of AHF, including a critical evaluation of the data supporting both traditional and novel mechanisms, and suggest a framework for integrating these mechanisms into an overall model of AHF.
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