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B-type natriuretic peptide in rheumatic diseases: a cardiac biomarker or a sophisticated acute phase reactant?
Theodoros Dimitroulas1, George Giannakoulas, Haralambos Karvounis
1Department of Rheumatology, Dudley Group NHS Foundation Trust, Russells Hall Hospital, Dudley, West Midlands DY1 2LT, UK. dimitroul@hotmail.com
Insights
Natriuretic peptides (NP) signal heart strain and dysfunction. In rheumatic diseases, inflammation may increase NP levels, impacting cardiovascular risk assessment and management.
Area of Science:
- Cardiology
- Rheumatology
- Biomarkers
Background:
- Natriuretic peptides (NP) indicate cardiac dysfunction and cardiovascular risk.
- Rheumatic diseases frequently involve cardiac complications, increasing morbidity and mortality.
- Inflammation in autoimmune disorders can affect the heart, potentially influencing NP levels.
Purpose of the Study:
- To explore the pathophysiologic mechanisms of enhanced NP expression in rheumatic disorders.
- To discuss the potential clinical implications of NP in managing cardiovascular risk in these patients.
Main Methods:
- Review of current literature on NP, inflammation, and rheumatic diseases.
- Discussion of neurohormonal axis activation and myocardial strain.
- Analysis of NP's role in diagnosing conditions like pulmonary hypertension.
Main Results:
- Inflammation associated with rheumatic diseases may stimulate NP production.
- NP are implicated in assessing right ventricular overload and pulmonary hypertension risk.
- The exact role of NP in cardiovascular risk assessment and management in rheumatic diseases requires further establishment.
Conclusions:
- Enhanced NP expression in rheumatic disorders is linked to inflammation and myocardial strain.
- NP hold potential for clinical application in risk stratification and management.
- Further research is needed to fully elucidate the precise role of NP in this patient population.
Abstract:
Natriuretic peptides (NP) are secreted by cardiomyocytes and are reliable markers of cardiac dysfunction and cardiovascular risk by reflecting myocardial stress due to various etiologies. Clinical and occult heart involvement is frequently observed in patients with rheumatic diseases and is associated with increased morbidity and mortality. Cardiac disease in autoimmune disorders encompasses different pathophysiological mechanisms including inflammation and involving either the myocardium or the coronary/pulmonary vessels. Although the major trigger for the synthesis and release of NP is myocardial strain, there is also some support for the concept that inflammation stimulates the neurohormonal system of the heart leading to increased production of NP. Recent studies have focused on the association of NP and inflammation in the context of rheumatic diseases, suggesting that up-regulation of neurohormonal axis in these conditions is linked with inflammation. Additionally the NP have a well-documented role in the diagnostic work-up of patients with connective tissue disease who are at increased risk of developing pulmonary hypertension, as the right ventricular overload results in increased NP synthesis and release. However the precise role of NP in the assessment and the management of cardiovascular risk in patients with rheumatic diseases is yet to be established. In the current article we discuss the pathophysiologic mechanisms involved in enhanced NP expression in patients with rheumatic disorders and their potential clinical implication in daily practice.
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