Neutrophil arrest in myocardial capillaries drives hypoxia and impairs diastolic function in a mouse model of heart failure with preserved ejection fraction
Small, D. M.; Buglione, A. E.; Allan-Rahill, N.; Locke, T.; Elmagid, L. A.; Hovasapian, S.; Kim, R.; Mistry, A. A.; Vaquerano, S. A.; Schaffer, C. B.; Nishimura, N.
Show abstract
Impairments in myocardial blood flow have been recognized for decades in human patients with and animal models of heart failure with preserved ejection fraction (HFpEF), but the underlying mechanisms and roles in pathogenesis remain poorly understood. Using intravital cardiac microcopy in a two-hit mouse model of HFpEF that combines high fat diet and inhibition of nitric oxide synthase, we identified an increase in slow or non-flowing neutrophils in capillaries compared to Control mice. In other mouse models of disease (e.g., in the brain of Alzheimers Disease mice), the presence of such stalled neutrophils leads to organ-wide decreases in perfusion and oxygenation. Administration of antibodies against the neutrophil surface protein Ly6G to deplete neutrophils reduced the number of arrested neutrophils in myocardial capillaries, leading to improvements in myocardial hypoxia, diastolic function, and exercise capacity. This study identifies a previously uncharacterized cellular mechanism that explains myocardial blood flow deficits in mouse models of HFpEF, and demonstrates that improving myocardial blood flow improves cardiac function, without necessitating reversal of pathologic remodeling. Restoring myocardial perfusion by decreasing neutrophil arrest in myocardial capillaries may provide a strategy for improving heart function in HFpEF patients in the future.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CD206 + IL-4Rα + MACROPHAGES ARE DRIVERS OF ADVERSE CARDIAC REMODELING IN ISCHEMIC CARDIOMYOPATHY 97%
- Splenic CD169 + Tim4 + Marginal Metallophilic Macrophages Are Essential for Wound Healing After Myocardial Infarction 96%
- Defective Desmosomal Adhesion Causes Arrhythmogenic Cardiomyopathy by involving an Integrin-αVβ6/TGF-β Signaling Cascade 96%
Similar papers in this journal
- Increased CPT1a expression is a critical cardioprotective response to pathological stress that suppresses gene programs for remodeling and enables rescue by gene transfer 97%
- Age-dependent RGS5 loss in pericytes induces cardiac dysfunction and fibrosis in the heart 96%
- Ablation of endogenously cycling adult cardiomyocytes worsens myocardial function after injury 96%
Similar papers in this journal
- Cardiac MAO-A inhibition protects against catecholamine-induced ventricular arrhythmias via enhanced diastolic calcium control 96%
- Sodium-myo-inositol cotransporter-1, SMIT1, promotes cardiac hypertrophy and fibrosis induced by pressure overload in mice 95%
- Remote Ischemic Preconditioning Ameliorates Anthracycline-induced Cardiotoxicity and Preserves Mitochondrial Integrity 95%
Similar papers in this journal
- Ablation of three major phospho-sites in RyR2 preserves the global adrenergic response but creates an arrhythmogenic substrate 95%
- Cardiac Troponin I Directly Binds and Inhibits Mitochondrial ATP Synthase: a Noncanonical Role in the Post-Ischemic Heart 95%
- Glucocorticoid Receptor ablation promotes cardiac regeneration by hampering cardiomyocyte terminal differentiation 94%
Similar papers in this journal
- Adrenergic Hypersensitivity Drives Ventricular Arrhythmias Following Loss of Plexin-Mediated Cardiac Innervation 97%
- Vascular Endothelial Barrier Protection Prevents Atrial Fibrillation by Preserving Cardiac Nanostructure 96%
- Evidence of Superior and Inferior Sinoatrial Nodes in the Mammalian Heart 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.