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Published on: February 26, 2013
Atrial Fibrillation in Diabetes: Epidemiology, Mechanisms and Integrated Management
Paschalis Karakasis1, Panagiotis Theofilis2, Konstantinos Grigoriou3
1Second Department of Cardiology, Hippokration General Hospital, Aristotle University of Thessaloniki, Konstantinoupoleos 49, 54642 Thessaloniki, Greece.
Insights
Diabetes significantly increases atrial fibrillation (AF) risk and adverse outcomes. Managing AF in diabetes requires comprehensive cardiometabolic optimization beyond standard treatments.
Area of Science:
- Cardiology
- Endocrinology
- Metabolic Disease
Background:
- Atrial fibrillation (AF) and diabetes mellitus frequently coexist, forming a high-risk cardiometabolic phenotype.
- Diabetes increases AF incidence, influenced by obesity, hypertension, CKD, HF, and metabolic syndrome.
- In established AF, diabetes worsens thromboembolic risk, HF, quality of life, and mortality.
Purpose of the Study:
- To review the epidemiology, mechanisms, and management of AF in the context of diabetes.
- To explore the concept of diabetic atrial cardiomyopathy and its contribution to AF.
- To outline management strategies for AF across the continuum of risk and disease in diabetic patients.
Main Methods:
- Narrative review integrating epidemiological data, mechanistic insights, and clinical management strategies.
- Examination of the "diabetic atrial cardiomyopathy" framework.
- Synthesis of current evidence on AF management in diabetic populations.
Main Results:
- Diabetes contributes to AF through mechanisms including hyperglycemia, insulin resistance, inflammation, and microvascular dysfunction, leading to atrial fibrosis and electrical/mechanical abnormalities.
- Diabetic atrial cardiomyopathy underlies AF initiation, persistence, progression, and recurrence.
- Effective management necessitates cardiometabolic optimization, lifestyle interventions, and tailored AF treatments.
Conclusions:
- AF in diabetes is a complex condition driven by multiple cardiometabolic factors.
- Management must address underlying metabolic derangements alongside AF-specific therapies.
- A holistic approach, including risk factor modification and personalized AF treatment, is crucial for improving outcomes.
Abstract:
Atrial fibrillation (AF) and diabetes mellitus frequently coexist and together define a high-risk cardiometabolic phenotype. Diabetes is associated with an increased incidence of AF, although this relationship is strongly influenced by obesity, hypertension, chronic kidney disease (CKD), heart failure (HF), sleep-disordered breathing, and broader metabolic risk clustering. Once AF develops, diabetes is associated with greater thromboembolic and HF risk, impaired quality of life, cognitive vulnerability, and excess mortality. These adverse outcomes may be partly explained by a multidimensional atrial substrate, described here within the conceptual framework of diabetic atrial cardiomyopathy, in which hyperglycaemia, insulin resistance, glycaemic variability, oxidative stress, inflammation, autonomic dysfunction, microvascular disease, lipotoxicity, and epicardial adipose tissue dysfunction may contribute to atrial fibrosis, electrical heterogeneity, impaired calcium handling, mitochondrial injury, and mechanical dysfunction. Collectively, these abnormalities may facilitate AF initiation, persistence, progression, and recurrence after rhythm-control interventions. Management should therefore extend beyond rhythm control and anticoagulation alone. In individuals at increased risk of AF, priorities include cardiometabolic optimization, treatment of obesity, hypertension, CKD, HF, and sleep apnoea, lifestyle intervention, and selective rhythm surveillance. In subclinical AF, decisions regarding anticoagulation should account for AF burden, thromboembolic and bleeding risk, renal function, frailty, and patient preference. In established AF, stroke prevention, symptom-directed rate or rhythm control, cardiometabolic therapy, and longitudinal reassessment remain central. This narrative review integrates the epidemiology, mechanisms, and management of AF in diabetes across the continuum from AF risk to subclinical and clinical disease.
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