Genomic, Proteomic, and Metabolic Comparisons of Small Animal Models of Heart Failure With Preserved Ejection Fraction: A Tale of Mice, Rats, and Cats

射血分数保留的心力衰竭 医学 心力衰竭 射血分数 运动不耐症 生物信息学 心脏病学 肌肉肥大 糖尿病 内科学 内分泌学 生物
作者
Alex Smith,Raffaele Altara,Ghadir Amin,Nada J. Habeichi,Daniel G. Thomas,Seungho Jun,Abdullah Kaplan,George W. Booz,Fouad A. Zouein
出处
期刊:Journal of the American Heart Association [Ovid Technologies (Wolters Kluwer)]
卷期号:11 (15) 被引量:13
标识
DOI:10.1161/jaha.122.026071
摘要

Heart failure with preserved ejection fraction (HFpEF) remains a medical anomaly that baffles researchers and physicians alike. The overall phenotypical changes of diastolic function and left ventricular hypertrophy observed in HFpEF are definable; however, the metabolic and molecular alterations that ultimately produce these changes are not well established. Comorbidities such as obesity, hypertension, and diabetes, as well as general aging, play crucial roles in its development and progression. Various animal models have recently been developed to better understand the pathophysiological and metabolic developments in HFpEF and to illuminate novel avenues for pharmacotherapy. These models include multi-hit rodents and feline aortic constriction animals. Recently, genomic, proteomic, and metabolomic approaches have been used to define altered signaling pathways in the heart associated with HFpEF, including those involved in inflammation, cGMP-related, Ca2+ handling, mitochondrial respiration, and the unfolded protein response in endoplasmic reticulum stress. This article aims to present an overview of what has been learnt by these studies, focusing mainly on the findings in common while highlighting unresolved issues. The knowledge gained from these research models will not simply be of benefit for treating HFpEF but will undoubtedly provide new insights into the mechanisms by which the heart deals with external stresses and how the processes involved can fail.

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