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用于转化研究的扩张型心肌病动物模型。

Animal models of dilated cardiomyopathy for translational research.

作者信息

Recchia F A, Lionetti V

机构信息

Scuola Superiore Sant'Anna, Sector of Medicine, Pisa, Italy.

出版信息

Vet Res Commun. 2007 Aug;31 Suppl 1:35-41. doi: 10.1007/s11259-007-0005-8.

Abstract

Animal models of cardiovascular disease have proved critically important for the discovery of pathophysiological mechanisms and for the advancement of diagnosis and therapy. They offer a number of advantages, principally the availability of adequate healthy controls and the absence of confounding factors such as marked differences in age, concomitant pathologies and pharmacological treatments. Dilated cardiomyopathy (DCM) is the third cause of heart failure (HF) and is characterized by progressive ventricular dilation and functional impairment in the absence of coronary lesions and/or hypertension. Over the past thirty years, investigators have developed numerous small and large animal models to study this very complex syndrome. Genetically modified mice are the most widely and intensively utilized research animals and allow high throughput studies on DCM. However, to translate discoveries from basic science into medical applications, research in large animal models becomes a necessary step. An accurate large animal model of DCM is pacing-induced HF. It is obtained by continuous cardiac pacing at a frequency three- to fourfold higher than the spontaneous heart rate and is mostly applied to dogs, but also to pigs, sheep and monkeys. To date, this model can still be considered a gold standard in HF research.

摘要

心血管疾病动物模型已被证明在发现病理生理机制以及推进诊断和治疗方面至关重要。它们具有许多优势,主要是有足够数量的健康对照,且不存在诸如年龄、伴随疾病和药物治疗方面的显著差异等混杂因素。扩张型心肌病(DCM)是心力衰竭(HF)的第三大病因,其特征是在没有冠状动脉病变和/或高血压的情况下,心室逐渐扩张和功能受损。在过去三十年里,研究人员开发了众多大小动物模型来研究这种非常复杂的综合征。基因工程小鼠是使用最广泛且研究最深入的实验动物,可用于对DCM进行高通量研究。然而,要将基础科学的发现转化为医学应用,对大型动物模型的研究就成为必要步骤。一种精确的DCM大型动物模型是起搏诱导的心力衰竭。它通过以比自发心率高三到四倍的频率持续心脏起搏获得,主要应用于犬类,但也适用于猪、羊和猴子。迄今为止,该模型仍可被视为心力衰竭研究的金标准。

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