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Updated: Apr 29, 2026

Isolation of Atrial Cardiomyocytes from a Rat Model of Metabolic Syndrome-related Heart Failure with Preserved Ejection Fraction
Published on: July 26, 2018
Atrial cardiomyopathy and systemic organ crosstalk: from mechanisms to clinical implications
Nick Laurens van Vreeswijk1, Andreas Meert2, Oliver Bundgaard Vad3,4
1Department of Cardiology, University Medical Centre Groningen, Groningen, The Netherlands n.l.van.vreeswijk@umcg.nl.
Insights
Atrial cardiomyopathy (ACMP) is a heart condition causing stroke and heart failure. It
Area of Science:
- Cardiology
- Pathophysiology
- Multiorgan Disease
Background:
- Atrial cardiomyopathy (ACMP) involves atrial abnormalities linked to stroke, heart failure, and mortality, independent of atrial fibrillation (AF).
- Emerging evidence suggests AF, stroke, and other adverse outcomes may be manifestations of ACMP.
- ACMP is increasingly viewed as an upstream driver of cardiovascular and systemic diseases.
Purpose of the Study:
- To synthesize current evidence on ACMP risk factors, pathophysiology, diagnosis, and staging.
- To summarize the bidirectional interactions between ACMP and other organs.
- To advocate for an integrated, atrium-centered approach to ACMP management.
Main Methods:
- Narrative review of experimental and clinical evidence.
- Synthesis of data on ACMP drivers (fibrosis, inflammation, oxidative stress, etc.).
- Analysis of ACMP's interactions with the left ventricle, lungs, brain, kidneys, and gut.
Main Results:
- ACMP is driven by fibrosis, inflammation, oxidative stress, and metabolic factors.
- ACMP contributes to and results from dysfunction in other organs via multiple pathways.
- ACMP progression is staged, with early phases potentially reversible.
Conclusions:
- ACMP is a multiorgan disease requiring an integrated, atrium-centered approach.
- Risk stratification and therapeutic strategies should consider ACMP's systemic impact.
- Further research is needed to establish diagnostic standards and refine treatments.
Abstract:
Atrial cardiomyopathy (ACMP) encompasses structural, electrical and functional atrial abnormalities that have been associated with ischaemic stroke, heart failure and mortality, independent of atrial fibrillation (AF). Increasing evidence suggests that AF, stroke and other adverse outcomes may represent parallel manifestations of ACMP. In the present narrative review, we synthesise current experimental and clinical evidence on the risk factors, pathophysiology, diagnosis and stages of ACMP, and summarise its bidirectional interactions with affected organs, including the left ventricle, lungs, brain, kidneys and gut.ACMP can be considered as an upstream disease process driven by fibrosis, inflammation, oxidative stress, hypercoagulability, metabolic stress and adipose tissue. Through haemodynamic, neurohormonal, inflammatory and thrombotic pathways, ACMP both contributes to and results from dysfunction in other organs, forming self-perpetuating cycles. ACMP can be characterised using complementary electrical, structural, functional and biomarker-based measures, although no single diagnostic standard exists. Disease progression appears staged, with earlier phases potentially reversible and advanced stages dominated by more permanent structural remodelling.Collectively, the evidence supports considering ACMP as a multiorgan disease, highlighting the need for an atrium-centred, integrated approach to risk stratification, preventive and therapeutic strategies.
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