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鳄鱼的心肌发育

Myocardial development in crocodylians.

作者信息

Kvasilova Alena, Gregorovicova Martina, Olejnickova Veronika, Kolesova Hana, Sedmera David

机构信息

Institute of Anatomy, First Faculty of Medicine, Charles University, Prague, Czech Republic.

Institute of Physiology, The Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Dev Dyn. 2022 Dec;251(12):2029-2047. doi: 10.1002/dvdy.527. Epub 2022 Sep 15.

DOI:10.1002/dvdy.527
PMID:36045487
Abstract

BACKGROUND

Recent reports confirmed the notion that there exists a rudimentary cardiac conduction system (CCS) in the crocodylian heart, and development of its ventricular part is linked to septation. We thus analyzed myocardial development with the emphasis on the CCS components and vascularization in two different crocodylian species.

RESULTS

Using optical mapping and HNK-1 immunostaining, pacemaker activity was localized to the right-sided sinus venosus. The atrioventricular conduction was restricted to dorsal part of the atrioventricular canal. Within the ventricle, the impulse was propagated from base-to-apex initially by the trabeculae, later by the ventricular septum, in which strands of HNK-1 positivity were temporarily observed. Completion of ventricular septation correlated with transition of ventricular epicardial activation pattern to mature apex-to-base direction from two periapical foci. Despite a gradual thickening of the ventricular wall, no morphological differentiation of the Purkinje network was observed. Thin-walled coronary vessels with endothelium positive for QH1 obtained a smooth muscle coat after septation. Intramyocardial vessels were abundant especially in the rapidly thickening left ventricular wall.

CONCLUSIONS

Most of the CCS components present in the homeiotherm hearts can be identified in the developing crocodylian heart, with a notable exception of the Purkinje network distinct from the trabeculae carneae.

摘要

背景

最近的报告证实了鳄鱼心脏中存在原始心脏传导系统(CCS)这一观点,并且其心室部分的发育与分隔有关。因此,我们分析了两种不同鳄鱼物种的心肌发育情况,重点关注CCS组成部分和血管形成。

结果

通过光学标测和HNK-1免疫染色,起搏器活动定位于右侧静脉窦。房室传导局限于房室管的背侧部分。在心室中,冲动最初通过小梁从基部向心尖传播,随后通过室间隔传播,其中暂时观察到HNK-1阳性条索。室间隔的完成与心室心外膜激活模式从两个根尖灶向成熟的心尖到基部方向的转变相关。尽管心室壁逐渐增厚,但未观察到浦肯野网络的形态学分化。有内皮且对QH1呈阳性的薄壁冠状血管在分隔后获得了平滑肌层。心肌内血管丰富,尤其是在快速增厚的左心室壁中。

结论

在恒温动物心脏中存在的大多数CCS组成部分都可以在发育中的鳄鱼心脏中识别出来,但与肉柱不同的浦肯野网络是个明显的例外。

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