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房室结的电重构:对逆行灌流鸡胚心脏的研究。

Electrical remodeling of atrioventricular junction: a study on retrogradely perfused chick embryonic heart.

机构信息

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

出版信息

Am J Physiol Heart Circ Physiol. 2024 Sep 1;327(3):H555-H564. doi: 10.1152/ajpheart.00115.2024. Epub 2024 Jul 19.

Abstract

Atrioventricular (AV) accessory pathways (APs) provide additional electrical connections between the atria and ventricles, resulting in severe electrical disturbances. It is generally accepted that APs originate in the altered annulus fibrosus maturation in the late prenatal and perinatal period. However, current experimental methods cannot address their development in specific locations around the annulus fibrosus because of the inaccessibility of late fetal hearts for electrophysiological investigation under physiological conditions. In this study, we describe an approach for optical mapping of the retrogradely perfused chick heart in the last third of the incubation period. This system showed stability for electrophysiological measurement for several hours. This feature allowed analysis of the number and functionality of the APs separately in each clinically relevant position. Under physiological conditions, we also recorded the shortening of the AV delay with annulus fibrosus maturation and analyzed ventricular activation patterns after conduction through APs at specific locations. We observed a gradual regression of AP with an area-specific rate (left-sided APs disappeared first). The results also revealed a sudden drop in the number of active APs between and . Accessory myocardial AV connections were histologically documented in all positions around the annulus fibrosus even after hatching. The fact that no electrically active AP was present at this stage highlights the necessity of electrophysiological evaluation of accessory atrioventricular connections in studying AP formation. We present the use of retrograde perfusion and optical mapping to investigate, for the first time, the regression of accessory pathways during annulus fibrosus maturation, separately examining each clinically relevant location. The system enables measurements under physiological conditions and demonstrates long-lasting stability compared with other approaches. This study offers applications of the model to investigate electrical and/or functional development in late embryonic development without concern about heart viability.

摘要

房室(AV)附加途径(APs)提供了心房和心室之间额外的电连接,导致严重的电干扰。一般认为,APs 起源于晚期产前和围产期纤维环的改变。然而,由于晚期胎儿心脏在生理条件下进行电生理研究的不可接近性,目前的实验方法无法确定它们在纤维环周围特定位置的发育情况。在这项研究中,我们描述了一种在孵化期最后三分之一时对逆行灌注的鸡心进行光学映射的方法。该系统在数小时内显示出稳定的电生理测量性能。这一特性允许在每个临床相关位置分别分析 AP 的数量和功能。在生理条件下,我们还记录了随着纤维环成熟而缩短的 AV 延迟,并分析了在特定位置通过 AP 传导后的心室激活模式。我们观察到 AP 随着区域特异性速率逐渐消退(左侧 AP 首先消失)。结果还显示,在 和 之间,AP 的数量突然减少。在纤维环周围的所有位置都通过组织学记录了房室附加心肌连接,即使在孵化后也是如此。在这个阶段没有电活动的 AP 存在的事实突出了在研究 AP 形成时对附加房室连接进行电生理评估的必要性。我们首次提出使用逆行灌注和光学映射来研究纤维环成熟过程中附加途径的消退,分别检查每个临床相关位置。该系统能够在生理条件下进行测量,与其他方法相比具有持久的稳定性。这项研究为在不关注心脏活力的情况下,应用该模型来研究晚期胚胎发育中的电和/或功能发育提供了应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/864d/11427115/bd2964642ad9/ajpheart.00115.2024_f001.jpg

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