Waldo K L, Kirby M L
Department of Anatomy, Medical College of Georgia, Augusta 30912.
Anat Rec. 1993 Nov;237(3):385-99. doi: 10.1002/ar.1092370312.
Previous studies of cardiac neural crest (CNC) migration in early chick embryos demonstrated CNC cells in the media of pharyngeal arch arteries three, four, and six, and in the most proximal part of the developing pulmonary arteries. The objectives of this study were to learn 1) to what extent the CNC is involved in the later development of the pulmonary arteries, 2) how the CNC cells are distributed in the sixth aortic arch artery including the wall of the ductus arteriosus in the older embryo, and 3) what happens to the CNC as the pulmonary artery/sixth arch complex grows into its adult configuration. Quail-to-chick chimeras were used to study CNC distribution in embryos aged 6 to 18 days. Controls (undisturbed chick embryos) were collected with chimeras. Each was fixed, processed, sectioned, stained with Feulgen-Rossenbeck stain, and analyzed. The results demonstrated that CNC disappeared from the proximal pulmonary arteries by embryonic day 9 and played no further role in pulmonary artery development. With the exception of the endothelium, CNC completely filled the wall of the sixth aortic arch artery as far distally as its junction with the dorsal aorta in younger embryos and with the aorta in older embryos, thus suggesting the possibility of proximodistal migration of CNC along the sixth aortic arch. The ductus wall, filled with CNC, was intimately associated with the recurrent laryngeal nerve, also filled with CNC, thereby strongly suggesting a role for CNC in ductal closure.
先前对早期鸡胚中心脏神经嵴(CNC)迁移的研究表明,CNC细胞存在于第三、第四和第六对咽弓动脉的中膜以及发育中的肺动脉最近端部分。本研究的目的是了解:1)CNC在肺动脉后期发育中参与的程度;2)在较老胚胎中,CNC细胞如何分布于第六对主动脉弓动脉,包括动脉导管壁;3)随着肺动脉/第六对主动脉弓复合体发育为成体形态,CNC会发生什么变化。采用鹌鹑-鸡嵌合体来研究6至18日龄胚胎中CNC的分布。将对照(未受干扰的鸡胚)与嵌合体一同收集。每个样本均进行固定、处理、切片,用福尔根-罗森贝克染色法染色并分析。结果表明,到胚胎第9天,CNC从近端肺动脉消失,在肺动脉发育中不再发挥进一步作用。在较年轻胚胎中,除内皮外,CNC完全填充第六对主动脉弓动脉壁直至其与背主动脉的连接处,在较老胚胎中则直至与主动脉的连接处,这表明CNC有可能沿第六对主动脉弓进行近-远迁移。充满CNC的动脉导管壁与同样充满CNC的喉返神经紧密相连,从而有力地表明CNC在导管闭合中发挥作用。