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充血性心力衰竭

科研文章

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Ambulatory Inotrope Infusions in Advanced Heart Failure - A Systematic Review and Meta-Analysis A Fully Magnetically Levitated Circulatory Pump for Advanced Heart Failure Rationale and design of the comParIson Of sacubitril/valsartaN versus Enalapril on Effect on nt-pRo-bnp in patients stabilized from an acute Heart Failure episode (PIONEER-HF) trial Association Between Functional Impairment and Medication Burden in Adults with Heart Failure Rationale and design of the GUIDE-IT study: Guiding Evidence Based Therapy Using Biomarker Intensified Treatment in Heart Failure Frequency, predictors, and prognosis of ejection fraction improvement in heart failure: an echocardiogram-based registry study Angiotensin–Neprilysin Inhibition in Heart Failure with Preserved Ejection Fraction Is Cardiac Diastolic Dysfunction a Part of Post-Menopausal Syndrome? Baseline Features of the VICTORIA (Vericiguat Global Study in Subjects With Heart Failure With Reduced Ejection Fraction) Trial The year in cardiology: heart failure: The year in cardiology 2019

Original Research2019 Apr 10. [Epub ahead of print]

JOURNAL:Nature. Article Link

Nitrosative stress drives heart failure with preserved ejection fraction

Schiattarella GG, Altamirano F, Hill JA et al. Keywords: HFpEF; iNOS-driven dysregulation; IRE1α-XBP1 pathway; mechanism of cardiomyocyte dysfunction

ABSTRACT


Heart failure with preserved ejection fraction (HFpEF) is a common syndrome with high morbidity and mortality for which there are no evidence-based therapies. Here we report that concomitant metabolic and hypertensive stress in mice-elicited by a combination of high-fat diet and inhibition of constitutive nitric oxide synthase using Nω-nitro-L-arginine methyl ester (L-NAME)-recapitulates the numerous systemic and cardiovascular features of HFpEF in humans. Expression of one of the unfolded protein response effectors, the spliced form of X-box-binding protein 1 (XBP1s), was reduced in the myocardium of our rodent model and in humans with HFpEF. Mechanistically, the decrease in XBP1s resulted from increased activity of inducible nitric oxide synthase (iNOS) and S-nitrosylation of the endonuclease inositol-requiring protein 1α (IRE1α), culminating in defective XBP1 splicing. Pharmacological or genetic suppression of iNOS, or cardiomyocyte-restricted overexpression of XBP1s, each ameliorated the HFpEF phenotype. We report that iNOS-driven dysregulation of the IRE1α-XBP1 pathway is a crucial mechanism of cardiomyocyte dysfunction in HFpEF.