Arrechedera H, Alvarez M, Strauss M, Ayesta C
Intituto Venezolano de Cardiologia, Caracas, Venezuela.
J Mol Cell Cardiol. 1987 Jul;19(7):641-51. doi: 10.1016/s0022-2828(87)80372-3.
A structural, ultrastructural and histochemical study in chick embryos indicates that the septum primum mesenchymal tissue originate between 3 and 5 days of development and that their origin may be related to an activation of endocardial cells that cover the septum primum. By day 3, endocardial cells display migratory appendages, cell hypertrophy and an increase in secretory and mitotic activity. In later stages (day 4) hypertrophic endocardial cells undergoing division seem to delaminate and translocate toward the subendocardial space to give rise to free mesenchymal-type cells. These results suggest that the endocardium makes up the bulk of the septum primum mesenchymal tissue as has been demonstrated during mesenchymal tissue formation in the atrioventricular canal and outflow tract. Before and during mesenchymal tissue formation an accumulation of extracellular matrix components like proteoglycans can be visualized using tannic acid. These extracellular components might be related to the promotion of cellular events described during endocardial activation. The fusion of the septum primum with the atrioventricular (AV) endocardial cushions which would obliterate the foramen primum, occurs between mesenchymal tissues. Therefore, any alteration in the normal development of these mesenchymal tissues could be related to pathological cases of persistent atrial communications. Light microscopy preliminary observations of embryonic mouse heart indicate that septum primum mesenchymal tissue formation occurs similarly between mouse and chick embryos.
一项对鸡胚的结构、超微结构和组织化学研究表明,原发隔间充质组织起源于发育的第3至5天,其起源可能与覆盖原发隔的心内膜细胞的激活有关。到第3天,心内膜细胞显示出迁移性附属物、细胞肥大以及分泌和有丝分裂活性增加。在后期阶段(第4天),正在分裂的肥大心内膜细胞似乎分层并向内皮下间隙移位,从而产生游离的间充质型细胞。这些结果表明,心内膜构成了原发隔间充质组织的大部分,这在房室管和流出道的间充质组织形成过程中已得到证实。在间充质组织形成之前和期间,可以使用鞣酸观察到细胞外基质成分如蛋白聚糖的积累。这些细胞外成分可能与心内膜激活过程中描述的细胞事件的促进有关。原发隔与房室(AV)心内膜垫的融合会封闭原发孔,这发生在间充质组织之间。因此,这些间充质组织正常发育的任何改变都可能与持续性心房交通的病理情况有关。对胚胎小鼠心脏的光学显微镜初步观察表明,小鼠和鸡胚之间原发隔间充质组织的形成方式相似。