Current animal models for the study of congestion in heart failure: an overview

被引:0
作者
Jirka Cops
Sibren Haesen
Bart De Moor
Wilfried Mullens
Dominique Hansen
机构
[1] Hasselt University,BIOMED – Biomedical Research Institute, Faculty of Medicine and Life Sciences
[2] Hasselt University,Doctoral School for Medicine and Life Sciences
[3] Hasselt University,Department of Nephrology
[4] BIOMED,Department of Cardiology
[5] Jessa Ziekenhuis,REVAL – Rehabilitation Research Center, Faculty of Rehabilitation Sciences
[6] Ziekenhuis Oost-Limburg,Heart Centre Hasselt
[7] Hasselt University,undefined
[8] Jessa Ziekenhuis,undefined
来源
Heart Failure Reviews | 2019年 / 24卷
关键词
Animal model; Congestion; Inferior vena cava constriction; Central venous pressure;
D O I
暂无
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学科分类号
摘要
Congestion (i.e., backward failure) is an important culprit mechanism driving disease progression in heart failure. Nevertheless, congestion remains often underappreciated and clinicians underestimate the importance of congestion on the pathophysiology of decompensation in heart failure. In patients, it is however difficult to study how isolated congestion contributes to organ dysfunction, since heart failure and chronic kidney disease very often coexist in the so-called cardiorenal syndrome. Here, we review the existing relevant and suitable backward heart failure animal models to induce congestion, induced in the left- (i.e., myocardial infarction, rapid ventricular pacing) or right-sided heart (i.e., aorta-caval shunt, mitral valve regurgitation, and monocrotaline), and more specific animal models of congestion, induced by saline infusion or inferior vena cava constriction. Next, we examine critically how representative they are for the clinical situation. After all, a relevant animal model of isolated congestion offers the unique possibility of studying the effects of congestion in heart failure and the cardiorenal syndrome, separately from forward failure (i.e., impaired cardiac output). In this respect, new treatment options can be discovered.
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页码:387 / 397
页数:10
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