Nitro-oleic acid enhances mitochondrial metabolism and ameliorates heart failure with preserved ejection fraction in mice

M Marion Müller T Torben Schubert C Cornelius Welke T Tibor Maske T Thomas Patschkowski E Elfi Donhauser J Jacqueline Heinen-Weiler (Medical Imaging Center, Electron Microscopy Medical Analysis − Core Facility, Ruhr University Bochum, Universitätsstrasse 150, 44801 Bochum, Germany) F Felix-Levin Hormann S Sven Heiles T Tina Johanna Schulz L Luisa Andrea Lengenfelder L Lucia Landwehrjohann E Elisa Theres Vogt B Bernd Stratmann J Jurek Hense S Simon Lüdtke M Martina Düfer E Elena Tolstik J Johann Dierks K Kristina Lorenz T Tamino Huxohl J Jan-Christian Reil V Vasco Sequeira F Francisco Jose Schopfer B Bruce A. Freeman V Volker Rudolph U Uwe Schlomann A Anna Klinke (Agnes Wittenborg Institute for Translational Cardiovascular Research, Herz- und Diabeteszentrum North Rhine-Westphalia, University Hospital of the Ruhr University Bochum)

Abstract

Abstract The prevalence of heart failure with preserved ejection fraction (HFpEF) is increasing, while treatment options are inadequate. Hypertension and obesity-related metabolic dysfunction contribute to HFpEF. Nitro-oleic acid (NO2-OA) impacts metabolic syndromes by improving glucose tolerance and adipocyte function. Here we show that treatment with NO2-OA ameliorates diastolic dysfunction and heart failure symptoms in a HFpEF mouse model induced by high-fat diet and inhibition of the endothelial nitric oxide synthase. Proteomic analysis of left ventricular tissue reveals that one-third of identified proteins, predominantly mitochondrial, are upregulated in hearts of NO2-OA-treated HFpEF mice compared to naïve and vehicle-treated HFpEF mice. Increased mitochondrial mass and numbers, and enhanced mitochondrial respiration are linked with this response, as assessed by transmission electron microscopy and high-resolution respirometry. Activation of the 5’-adenosine-monophosphate-activated-protein-kinase (AMPK) signaling pathway mediates the enhancement of mitochondrial dynamics in hearts of NO2-OA-treated HFpEF mice. These findings suggest that targeting mitochondrial function with NO2-OA may represent a promising therapeutic strategy for HFpEF.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 26, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (28)

M

Marion Müller

T

Torben Schubert

C

Cornelius Welke

T

Tibor Maske

T

Thomas Patschkowski

E

Elfi Donhauser

J

Jacqueline Heinen-Weiler

Medical Imaging Center, Electron Microscopy Medical Analysis − Core Facility, Ruhr University Bochum, Universitätsstrasse 150, 44801 Bochum, Germany

F

Felix-Levin Hormann

S

Sven Heiles

T

Tina Johanna Schulz

L

Luisa Andrea Lengenfelder

L

Lucia Landwehrjohann

E

Elisa Theres Vogt

B

Bernd Stratmann

J

Jurek Hense

S

Simon Lüdtke

M

Martina Düfer

E

Elena Tolstik

J

Johann Dierks

K

Kristina Lorenz

T

Tamino Huxohl

J

Jan-Christian Reil

V

Vasco Sequeira

F

Francisco Jose Schopfer

B

Bruce A. Freeman

V

Volker Rudolph

U

Uwe Schlomann

A

Anna Klinke

Agnes Wittenborg Institute for Translational Cardiovascular Research, Herz- und Diabeteszentrum North Rhine-Westphalia, University Hospital of the Ruhr University Bochum