射血分数保留的心力衰竭
心力衰竭
内科学
一氧化氮
内分泌学
线粒体
安普克
医学
射血分数
心脏病学
油酸
脂毒性
化学
蛋白激酶A
生物化学
胰岛素抵抗
肥胖
酶
作者
Marion Müller,Torben Schubert,Cornelius Bischof,Tibor Maske,Thomas Patschkowski,Elfi Donhauser,Jacqueline Heinen‐Weiler,Felix-Levin Hormann,Sven Heiles,Tina Johanna Schulz,Luisa Andrea Lengenfelder,Lucia Landwehrjohann,Elisa Theres Vogt,Bernd Stratmann,Jurek Hense,Simon Lüdtke,Martina Düfer,Elen Tolstik,Johann Dierks,Kristina Lorenz
标识
DOI:10.1038/s41467-025-59192-5
摘要
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 (NO 2 -OA) impacts metabolic syndromes by improving glucose tolerance and adipocyte function. Here we show that treatment with NO 2 -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 NO 2 -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 NO 2 -OA-treated HFpEF mice. These findings suggest that targeting mitochondrial function with NO 2 -OA may represent a promising therapeutic strategy for HFpEF.
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