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Cardiovascular Disease as a Multisystem Disorder: Integrating Inflammation, Metabolism, and Organ Crosstalk
Sidhartha Gautam Senapati1, Debabrata Mukherjee2
1Department of Internal Medicine, Texas Tech University Health Sciences Center, El Paso, TX, USA.
Insights
Cardiovascular disease (CVD) is a multisystem disorder, not just a heart condition. Common systemic mechanisms like inflammation and insulin resistance drive various CVDs, involving multiple organs.
Area of Science:
- Cardiology
- Systemic Physiology
- Pathophysiology
Background:
- Cardiovascular disease (CVD) traditionally viewed as cardiac.
- Emerging evidence highlights CVD as multifactorial and multisystemic.
- Understanding systemic influences is crucial for CVD management.
Purpose of the Study:
- To review evidence on inflammatory, metabolic, neurohormonal, and endothelial factors in CVD pathophysiology.
- To illustrate the role of inter-organ communication in CVD progression.
- To synthesize current understanding of CVD as a multisystem disease.
Main Methods:
- Narrative review of literature from 2010-2025.
- Searches conducted on PubMed/MEDLINE, Scopus, Web of Science, and Google Scholar.
- Inclusion of clinical trials, observational studies, and reviews.
Main Results:
- Common systemic mechanisms underlie diverse cardiovascular disorders (heart failure, coronary artery disease, atrial fibrillation, hypertension).
- Key mechanisms include chronic inflammation, immune dysregulation, insulin resistance, and neurohormonal stimulation.
- Complex interactions between heart, kidneys, liver, gut, adipose tissue, and brain significantly impact disease severity.
Conclusions:
- Cardiovascular disorders share common systemic pathophysiological pathways.
- Inter-organ communication is critical in the progression and exacerbation of CVD.
- An integrated, systems-level approach is promising but faces translational and clinical trial challenges.
Abstract:
Historically, cardiovascular disease (CVD) has often been regarded as a primarily cardiac condition. Nevertheless, recent research data suggests that this disease should be considered a multifactorial and multisystem one. In this narrative review, available evidence related to inflammatory processes, metabolic disorders, neurohormonal signaling, endothelial dysfunction, and communication between organs will be summarized to illustrate the pathophysiology of CVD. A structured search of available literature was performed using the PubMed/MEDLINE, Scopus, Web of Science, and Google Scholar databases. Only articles from 2010 to 2025 were considered to ensure that the latest developments were accounted for. The selected literature includes clinical trials, observational studies, and reviews. The analysis suggests, that all cardiovascular disorders, including heart failure, coronary artery disease, atrial fibrillation, and hypertension, have common systemic mechanisms, namely, chronic inflammation, immunological dysregulation, insulin resistance, and neurohormonal stimulation. Moreover, complex relationships exist between the heart, kidneys, liver, gastrointestinal tract, adipose tissue, and the brain, and they can lead to the aggravation of disease course. Despite promising results obtained within an integrated approach, several difficulties need to be acknowledged, among which, clinical translational issues and lack of systems-level clinical trials are of primary importance.
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