Pesevski Zivorad, Kvasilova Alena, Stopkova Tereza, Nanka Ondrej, Drobna Krejci Eliska, Buffinton Christine, Kockova Radka, Eckhardt Adam, Sedmera David
Institute of Anatomy, Charles University, Prague, Czech Republic.
Institute of Physiology, Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Dev Dyn. 2018 Mar;247(3):509-520. doi: 10.1002/dvdy.24521. Epub 2017 Jun 15.
Endocardial fibroelastosis (EFE) is a diffuse thickening of the ventricular endocardium, causing myocardial dysfunction and presenting as unexplained heart failure in infants and children. One of the postulated causes is persistent and increased wall tension in the ventricles.
To examine whether reduced ventricular pressure in a chick model of hypoplastic left heart syndrome (HLHS) induced by left atrial ligation (LAL) at embryonic day (ED) 4 is associated with EFE at later stages, myocardial fibrosis was evaluated by histology and immunoconfocal microscopy and mass spectrometry (MS) at ED12. Immunohistochemistry with collagen I antibody clearly showed a significant thickening of the layer of subendocardial fibrous tissue in LAL hearts, and MS proved this significant increase of collagen I. To provide further insight into pathogenesis of this increased fibroproduction, hypoxyprobe staining revealed an increased extent of hypoxic regions, normally limited to the interventricular septum, in the ventricular myocardium of LAL hearts at ED8.
Abnormal hemodynamic loading during heart development leads to myocardial hypoxia, stimulating collagen production in the subendocardium. Therefore, EFE in this chick embryonic model of HLHS appears to be a secondary effect of abnormal hemodynamics. Developmental Dynamics 247:509-520, 2018. © 2017 Wiley Periodicals, Inc.
心内膜弹力纤维增生症(EFE)是心室心内膜的弥漫性增厚,可导致心肌功能障碍,并表现为婴幼儿不明原因的心力衰竭。一种推测的病因是心室壁张力持续增加。
为了研究在胚胎期第4天通过左心房结扎(LAL)诱导的左心发育不全综合征(HLHS)雏鸡模型中,心室压力降低是否与后期的EFE相关,在胚胎期第12天通过组织学、免疫共聚焦显微镜和质谱(MS)评估心肌纤维化。用I型胶原抗体进行免疫组织化学分析清楚地显示,LAL组心脏的心内膜下纤维组织层显著增厚,质谱分析证实了I型胶原的显著增加。为了进一步深入了解这种纤维生成增加的发病机制,缺氧探针染色显示,在胚胎期第8天,LAL组心脏心室心肌中的缺氧区域范围增加,正常情况下该区域仅限于室间隔。
心脏发育过程中的异常血流动力学负荷导致心肌缺氧,刺激心内膜下胶原生成。因此,在这个HLHS雏鸡胚胎模型中,EFE似乎是异常血流动力学的继发效应。《发育动力学》247:509 - 520,2018年。©2017威利期刊公司。