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Ebstein 畸形的分子途径和动物模型。

Molecular Pathways and Animal Models of Ebstein's Anomaly.

机构信息

Department of Medical Biology, Amsterdam Cardiovascular Sciences, Amsterdam University Medical Centres, Amsterdam, The Netherlands.

Cardiovascular Genetics, Department of Pediatrics, CHU Sainte Justine, Université de Montréal, Montréal, QC, Canada.

出版信息

Adv Exp Med Biol. 2024;1441:915-928. doi: 10.1007/978-3-031-44087-8_58.

Abstract

Ebstein's anomaly is a congenital malformation of the tricuspid valve characterized by abnormal attachment of the valve leaflets, resulting in varying degrees of valve dysfunction. The anatomic hallmarks of this entity are the downward displacement of the attachment of the septal and posterior leaflets of the tricuspid valve. Additional intracardiac malformations are common. From an embryological point of view, the cavity of the future right atrium does not have a direct orifice connected to the developing right ventricle. This chapter provides an overview of current insight into how this connection is formed and how malformations of the tricuspid valve arise from dysregulation of molecular and morphological events involved in this process. Furthermore, mouse models that show features of Ebstein's anomaly and the naturally occurring model of canine tricuspid valve malformation are described and compared to the human model. Although Ebstein's anomaly remains one of the least understood cardiac malformations to date, the studies summarized here provide, in aggregate, evidence for monogenic and oligogenic factors driving pathogenesis.

摘要

Ebstein 畸形是三尖瓣的一种先天性畸形,其特征为瓣叶附着异常,导致不同程度的瓣叶功能障碍。该疾病的解剖学特征为三尖瓣的隔瓣和后瓣附着向下移位。此外,还常合并其他心内畸形。从胚胎学的角度来看,未来右心房的腔没有直接与发育中的右心室相连的孔口。本章概述了目前对这种连接如何形成以及三尖瓣畸形如何由于涉及该过程的分子和形态事件的失调而产生的认识。此外,还描述了具有 Ebstein 畸形特征的小鼠模型和犬三尖瓣畸形的自然发生模型,并与人类模型进行了比较。尽管 Ebstein 畸形仍然是迄今为止了解最少的心脏畸形之一,但这里总结的研究提供了证据,表明单基因和寡基因因素在发病机制中起作用。

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