Bruel M T, Meiniel R, Meiniel A, David D
Laboratoire de Biologie animale et U.A. CNRS 677, Université Clermont II, Aubière, France.
J Neural Transm. 1987;70(1-2):145-68. doi: 10.1007/BF01252516.
The secretory activity of the subcommissural organ (SCO) was studied during embryogenesis of the chick (Gallus gallus) using two lectins labelled with fluorescein isothiocyanate, concanavalin A (Con A) and wheat-germ agglutinin (WGA). While WGA labels the apical or ventricular border of the organ, Con A labels both, the apical and vascular poles of the cells. Glycoproteinaceous secretory products, visualized by Con A appear early, at 5 days, in the ependymal epithelium and expand progressively in a rostrocaudal direction. A correlation is established between histofluorescence and the ultrastructural aspects of the ependymocytes. This throws light on the role of the endoplasmic reticulum in the synthesis, storage and transport of the material produced by the SCO, and points to the existence of two poles of exchange between the secretory cells and the extracellular medium, i.e., the ventricular and the vascular one. WGA reactivity at the apical border is linked up with the formation of Reissner's fibre and shows that the secretory product of the SCO cells undergoes at least partly modifications during its intracytoplasmic transport preceding apical discharge.
利用两种异硫氰酸荧光素标记的凝集素——伴刀豆球蛋白A(Con A)和麦胚凝集素(WGA),研究了鸡(原鸡)胚胎发育过程中连合下器官(SCO)的分泌活动。WGA标记该器官的顶端或脑室边界,而Con A标记细胞的顶端和血管极。Con A显示的糖蛋白分泌产物在第5天早期出现在室管膜上皮,并沿头尾方向逐渐扩展。建立了组织荧光与室管膜细胞超微结构之间的相关性。这揭示了内质网在SCO产生物质的合成、储存和运输中的作用,并指出分泌细胞与细胞外介质之间存在两个交换极,即脑室极和血管极。顶端边界处的WGA反应性与雷斯纳纤维的形成有关,表明SCO细胞的分泌产物在顶端排出前的胞质内运输过程中至少部分发生了修饰。