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A Novel Digital Platform for a Monitored Home-based Cardiac Rehabilitation Program
Published on: April 19, 2019
[ANMCO/ELAS/SIBioC Consensus document: Recommendations for the use of cardiac biomarkers in heart failure patients]
Nadia Aspromonte1, Michele Massimo Gulizia2, Aldo Clerico3
1U.O.C. Cardiologia-UTIC, Presidio Ospedaliero San Filippo Neri, Roma.
Insights
Biomarkers significantly improve heart failure (HF) evaluation and management. New biomarkers show promise for personalized HF care, including managing cardio-renal syndrome.
Area of Science:
- Cardiology
- Biomarker Research
- Internal Medicine
Background:
- Biomarkers are crucial for evaluating and managing heart failure (HF).
- Natriuretic peptides (BNP, NT-proBNP) are established gold standards for HF diagnosis and prognosis.
- Emerging biomarkers reflect diverse HF pathophysiological processes like myocardial insult, inflammation, and fibrosis.
Framework:
- Established biomarkers like natriuretic peptides guide HF management.
- New biomarkers are being investigated for their role in clinical HF care.
- Further validation studies are required for novel biomarkers.
Implementation:
- Novel biomarkers show potential in identifying early renal dysfunction.
- These biomarkers may assist in managing cardio-renal syndrome.
- A multi-biomarker approach is emerging for HF patient evaluation.
Implications:
- A closer collaboration between cardiology and laboratory diagnostics is anticipated.
- Tailored HF management based on individual pathological phenotypes is becoming feasible.
- This approach offers opportunities for personalized therapeutic interventions.
Abstract:
Biomarkers have dramatically impacted the way heart failure (HF) patients are evaluated and managed. A biomarker is a characteristic that is objectively measured and evaluated as an indicator of normal biological or pathogenic processes, or pharmacological responses to a therapeutic intervention. Natriuretic peptides (B-type natriuretic peptide [BNP] and N-terminal proBNP) are the gold standard biomarkers in determining the diagnosis and prognosis of HF, and a natriuretic peptide-guided HF management looks promising. In the last few years, an array of additional biomarkers has emerged, each reflecting different pathophysiological processes in the development and progression of HF: myocardial insult, inflammation, fibrosis and remodeling, but their role in the clinical care of the patient is still partially defined and more studies are needed before to be well validated. Moreover, several new biomarkers have the potential to identify patients with early renal dysfunction and appear to have promise to help the management cardio-renal syndrome.With different biomarkers reflecting HF presence, the various pathways involved in its progression, as well as identifying unique treatment options for HF management, a closer cardiologist-laboratory link, with a multi-biomarker approach to the HF patient, is not far ahead, allowing the unique opportunity for specifically tailoring care to the individual pathological phenotype.
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