Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox

<b>Introduction</b>: Adipose tissue (AT) is increasingly recognized as an active endocrine and immunological organ involved in the pathophysiology of heart failure with preserved ejection fraction (HFpEF). Dysfunctional AT, particularly visceral, promotes chronic low-grade inflammation,...

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Published in:Biomedicines
Main Authors: Michał Maksymilian Wilk, Piotr Gajewski
Format: Article
Language:English
Published: MDPI AG 2026-06-01
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Online Access:https://www.mdpi.com/2227-9059/14/6/1305
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author Michał Maksymilian Wilk
Piotr Gajewski
author_facet Michał Maksymilian Wilk
Piotr Gajewski
author_sort Michał Maksymilian Wilk
collection DOAJ
container_title Biomedicines
description <b>Introduction</b>: Adipose tissue (AT) is increasingly recognized as an active endocrine and immunological organ involved in the pathophysiology of heart failure with preserved ejection fraction (HFpEF). Dysfunctional AT, particularly visceral, promotes chronic low-grade inflammation, endothelial dysfunction, and microvascular damage. At the same time, higher body mass is associated with paradoxically lower natriuretic peptide (NP) levels, which may impact diagnostic accuracy in HFpEF. <b>Methods</b>: This narrative review summarizes the current evidence on the interplay between adipose tissue, NPs, and HFpEF, focusing on pathophysiological mechanisms, AT distribution, and clinical implications. <b>Results</b>: Adipokine-mediated inflammation contributes to the myocardial stiffness, fibrosis, and cardiac remodeling characteristic of HFpEF. Visceral adipose tissue, including epicardial fat, exhibits a more proinflammatory profile than subcutaneous fat. Obesity is associated with decreased NP levels due to increased clearance and decreased production. Consequently, lower NP levels may lead to underdiagnosis or misclassification of HFpEF, particularly in diagnostic algorithms such as HFA-PEFF and H<sub>2</sub>FPEF. Patients with low BMI or cachexia exhibit elevated NP levels, reflecting advanced disease and catabolic states. <b>Conclusions</b>: The obesity-natriuretic paradox poses a key diagnostic challenge in HFpEF. Interpretation of natriuretic peptide levels should take body composition into account, and refinement of biomarker cutoff values may improve diagnostic accuracy.
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spelling doaj-art-35e355af92dd4e8cb5bb85a314f7dfd82026-06-25T13:36:54ZengMDPI AGBiomedicines2227-90592026-06-01146130510.3390/biomedicines14061305Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity ParadoxMichał Maksymilian Wilk0Piotr Gajewski1Institute of Heart Diseases, Wroclaw Medical University, 50-367 Wroclaw, PolandInstitute of Heart Diseases, Wroclaw Medical University, 50-367 Wroclaw, Poland<b>Introduction</b>: Adipose tissue (AT) is increasingly recognized as an active endocrine and immunological organ involved in the pathophysiology of heart failure with preserved ejection fraction (HFpEF). Dysfunctional AT, particularly visceral, promotes chronic low-grade inflammation, endothelial dysfunction, and microvascular damage. At the same time, higher body mass is associated with paradoxically lower natriuretic peptide (NP) levels, which may impact diagnostic accuracy in HFpEF. <b>Methods</b>: This narrative review summarizes the current evidence on the interplay between adipose tissue, NPs, and HFpEF, focusing on pathophysiological mechanisms, AT distribution, and clinical implications. <b>Results</b>: Adipokine-mediated inflammation contributes to the myocardial stiffness, fibrosis, and cardiac remodeling characteristic of HFpEF. Visceral adipose tissue, including epicardial fat, exhibits a more proinflammatory profile than subcutaneous fat. Obesity is associated with decreased NP levels due to increased clearance and decreased production. Consequently, lower NP levels may lead to underdiagnosis or misclassification of HFpEF, particularly in diagnostic algorithms such as HFA-PEFF and H<sub>2</sub>FPEF. Patients with low BMI or cachexia exhibit elevated NP levels, reflecting advanced disease and catabolic states. <b>Conclusions</b>: The obesity-natriuretic paradox poses a key diagnostic challenge in HFpEF. Interpretation of natriuretic peptide levels should take body composition into account, and refinement of biomarker cutoff values may improve diagnostic accuracy.https://www.mdpi.com/2227-9059/14/6/1305HFpEFobesityadipose tissuenatriuretic peptides
spellingShingle Michał Maksymilian Wilk
Piotr Gajewski
Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox
HFpEF
obesity
adipose tissue
natriuretic peptides
title Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox
title_full Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox
title_fullStr Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox
title_full_unstemmed Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox
title_short Adipose Tissue, Natriuretic Peptides, and HFpEF: Clinical Implications of the Obesity Paradox
title_sort adipose tissue natriuretic peptides and hfpef clinical implications of the obesity paradox
topic HFpEF
obesity
adipose tissue
natriuretic peptides
url https://www.mdpi.com/2227-9059/14/6/1305
work_keys_str_mv AT michałmaksymilianwilk adiposetissuenatriureticpeptidesandhfpefclinicalimplicationsoftheobesityparadox
AT piotrgajewski adiposetissuenatriureticpeptidesandhfpefclinicalimplicationsoftheobesityparadox