Didier-Bazès M, Chouaf-Lakhdar L, Dutuit M, Aguera M, Belin M F
INSERM U433, Faculté de Médecine Laennec, 69372 Lyon, France.
Microsc Res Tech. 2001 Mar 1;52(5):461-7. doi: 10.1002/1097-0029(20010301)52:5<461::AID-JEMT1032>3.0.CO;2-H.
SCO-ependymocytes have a secretory activity and a neural innervation relating them to neurosecretory nerve cells. To elucidate the cell lineage of the SCO-ependymocytes and emphasize the role of the neural innervation in their differentiation, in particular 5-HT innervation, we analyzed the developmental pattern of expression of several glial and neuronal markers: (1) in the SCO of mammals possessing (rat, cat) or devoid (mouse, rabbit) of 5-HT innervation, (2) in rat 5-HT deafferented SCO, and (3) in rat SCO transplanted in a foreign environment, the fourth ventricle. The ability of SCO-ependymocytes to transiently express GFAP during development and express the glial alpha alpha-enolase confirms the glial lineage of the SCO-ependymocytes. Synthesis of vimentin by SCO-ependymocytes relates them to the classical ependymocytes. The ability of mature SCO-ependymocytes to take up GABA only when they are innervated by 5-HT terminal underlines the role of the neural environment on the differentiation of these ependymocytes and suggests that differential maturation of the SCO according to its innervation, may lead to specific functional specialization of this organ in different species.
SCO室管膜细胞具有分泌活性和神经支配,这将它们与神经分泌神经细胞联系起来。为了阐明SCO室管膜细胞的细胞谱系,并强调神经支配在其分化中的作用,特别是5-羟色胺(5-HT)神经支配的作用,我们分析了几种神经胶质和神经元标志物的发育表达模式:(1)在具有(大鼠、猫)或缺乏(小鼠、兔)5-HT神经支配的哺乳动物的SCO中,(2)在大鼠5-HT去传入神经的SCO中,以及(3)在移植到第四脑室这一异源环境中的大鼠SCO中。SCO室管膜细胞在发育过程中短暂表达胶质纤维酸性蛋白(GFAP)并表达神经胶质αα-烯醇化酶的能力证实了SCO室管膜细胞的神经胶质谱系。SCO室管膜细胞合成波形蛋白将它们与经典的室管膜细胞联系起来。成熟的SCO室管膜细胞仅在被5-HT终末神经支配时才摄取γ-氨基丁酸(GABA),这突出了神经环境在这些室管膜细胞分化中的作用,并表明SCO根据其神经支配的差异成熟可能导致该器官在不同物种中具有特定的功能特化。