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首页> 外文期刊>American Journal of Physiology >Cardiac neural crest ablation inhibits compaction and electrical function of conduction system bundles.
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Cardiac neural crest ablation inhibits compaction and electrical function of conduction system bundles.

机译:心脏神经rest消融抑制传导系统束的压紧和电功能。

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Retroviral and transgenic lineage-tracing studies have shown that neural crest cells associate with the developing bundles of the ventricular conduction system. Whereas this migration of cells does not provide progenitors for the myocardial cells of the conduction system, the question of whether neural crest affects the differentiation and/or function of cardiac specialized tissues continues to be of interest. Using optical mapping of voltage-sensitive dye, we determined that ventricles from chick embryos in which the cardiac neural crest had been laser ablated did not progress to apex-to-base activation by the expected stage [i.e., Hamburger and Hamilton (HH) 35] but instead maintained basal breakthroughs of epicardial activation consistent with immature function of the conduction system. In direct studies of activation, waves of depolarization originating from the His bundle were found to be uncommon in control hearts from HH34 and HH35 embryos. However, activations propagating from septal base, at or near the His bundle, occurred frequently in hearts from HH34 and HH35 neural crest-ablated embryos. Consistent with His bundle cells maintaining electrical connections with adjacent working myocytes, histological analyses of hearts from neural crest-ablated embryos revealed His bundles that had not differentiated a lamellar organization or undergone a process of compaction and separation from surrounding myocardium observed in controls. Furthermore, measurements on histological sections from optically mapped hearts indicated that, whereas His bundle diameter in control embryos thinned by almost one-half between HH30 and HH34, the His bundle in ablated embryos underwent no such compaction in diameter, maintaining a thickness at HH30, HH32, and HH34 similar to that observed in HH30 controls. We conclude that the cardiac neural crest is required in a novel function involving lamellar compaction and electrical isolation of the basally located His bundle from surrounding myocardium.
机译:逆转录病毒和转基因谱系追踪研究表明,神经rest细胞与心室传导系统的发育束相关。尽管细胞的这种迁移不能为传导系统的心肌细胞提供祖细胞,但是神经c是否影响心脏专用组织的分化和/或功能的问题仍然令人关注。使用电压敏感染料的光学作图,我们确定在预期阶段,来自心脏神经from已被激光消融的雏鸡胚的心室并没有进展为从顶点到碱基的激活[即,Hamburger和Hamilton(HH)35 ],但维持心外膜激活的基础突破与传导系统的未成熟功能相一致。在直接的激活研究中,发现从His束发出的去极化波在HH34和HH35胚胎的对照心脏中并不常见。但是,从HH34和HH35神经c消融的胚胎的心脏中经常发生从间隔底​​部,His束附近或附近传播的激活。与His束细胞保持与相邻工作心肌细胞的电连接一致,神经c消融的胚胎对心脏的组织学分析显示,His束未分化出片状组织,也未经历与对照组相比周围心肌的压实和分离过程。此外,对光学成像心脏的组织学切片进行的测量表明,尽管对照胚胎的His束直径在HH30和HH34之间变薄了近一半,但消融胚胎中的His束直径没有发生这种压实,保持了HH30的厚度, HH32和HH34与在HH30对照中观察到的相似。我们得出结论,在涉及层状压实和基底定位的His束与周围心肌的电隔离的新功能中,需要心脏神经波峰。

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