Biomarkers Correspond with Echocardiographic Phenotypes in Heart Failure with Preserved Ejection Fraction: A Secondary Analysis of the RELAX Trial

Abstract

Background: Little is known about the relationship between structural phenotypes in in heart failure with preserved ejection fraction (HFpEF) and cardiac biomarkers. We used cluster analysis to identify cardiac structural phenotypes and their relationships to biomarkers in HFpEF. Methods and results: Latent class analysis (LCA) was applied to echocardiographic data including left atrial enlargement (LAE), diastolic dysfunction (DD), E/e`, EF < 55%, and right ventricular dysfunction.from 216 patients enrolled in the RELAX trial. Three structural phenotypes were identified. Phenotype A had the most grade II DD. Phenotype B had the most grade III DD, worst LAE, elevated E/e` and right ventricular dysfunction. Phenotype C had the least DD and moderate LAE. Phenotypes B and C had prevalent atrial fibrillation (AF). Phenotype B patients had increased carboxy-terminal telopeptide of collagen type I (CITP), cystatin-c (CYSTC), endothelin-1 (ET1), NT-proBNP, and high-sensitivity troponin I (TNI). Type A had the next highest CITP and CYSTC levels while Type C had next highest NT-proBNP. Conclusions: Structural HFpEF phenotypes demonstrated different characteristics including cardiac biomarkers. These findings may help explain phenotype-specific differences in natural history and prognosis, and they may represent phenotype-specific pathophysiology that could be amenable to targeted therapy.

Competing Interest Statement

The authors have declared no competing interest.

Funding Statement

This study was funded by the NHLBI: K08 HL125725 (PI: Kao), L30 HL110124 (PI: Kao); and by the American Heart Association: 171G33660301 (PI: Kao)

Author Declarations

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The details of the IRB/oversight body that provided approval or exemption for the research described are given below:

The Colorado Multi-Institutional Review Board gave ethical proval for this work.

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Data Availability

All primary data used in the present study are available from the NHLBI BioLINCC resource by application. Harmonized data derived from BioLINCC data are available from the authors on reasonable request.

https://biolincc.nhlbi.nih.gov/studies/hfn_relax/

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