Meyer G, Schaaps J P, Moreau L, Goffinet A M
Department of Anatomy, Faculty of Medicine, University La Laguna, 38071 La Laguna/Tenerife, Spain.
J Neurosci. 2000 Mar 1;20(5):1858-68. doi: 10.1523/JNEUROSCI.20-05-01858.2000.
Early corticogenesis was studied in human embryos and early fetuses from Carnegie stages 16 to 22 (5-8 gestational weeks) by using immunohistochemistry for Reelin (Reln), calretinin (CR), and glutamic acid decarboxylase (GAD). A first population of Reln-positive cells appears in the neocortical anlage at stage 16 and increases in number at stages 17-18. At stages 19-20, a monolayer of horizontal CR- and GAD-positive, Reln-negative neurons forms in the preplate, whereas Reln-positive cells shift into a subpial position. Another cell class, the pioneer projection neuron, is CR-positive but GAD- and Reln-negative; pioneer cells contribute early corticofugal axons. Pioneer cells first appear below the monolayer at stage 20 and form a pioneer plate at stage 21. The cortical plate (CP) proper emerges at stage 21 and inserts itself within the pioneer plate, which is thus split into a minor superficial component and a larger deep component that presumably corresponds to the subplate. Initial CP neurons are radially organized and mostly CR-negative. Reln-positive cells remain consistently segregated from the pioneer cells and are thus not directly involved in preplate partition. Our data indicate that the neuronal composition of the human neocortical preplate is more complex than generally described and that various neurons participate in a sequence of events that precede the emergence of the CP.
通过使用针对Reelin(Reln)、钙视网膜蛋白(CR)和谷氨酸脱羧酶(GAD)的免疫组织化学方法,对卡内基分期16至22期(妊娠5 - 8周)的人类胚胎和早期胎儿的早期皮质发生进行了研究。在第16期,第一批Reln阳性细胞出现在新皮质原基中,并在第17 - 18期数量增加。在第19 - 20期,一层水平排列的CR和GAD阳性、Reln阴性神经元在预板中形成,而Reln阳性细胞转移到软膜下位置。另一类细胞,即先驱投射神经元,是CR阳性但GAD和Reln阴性;先驱细胞贡献早期的皮质传出轴突。先驱细胞在第20期首次出现在单层下方,并在第21期形成先驱板。皮质板(CP)本身在第21期出现,并插入先驱板内,因此先驱板被分为一个较小的浅层成分和一个较大的深层成分,推测深层成分对应于亚板。最初的CP神经元呈放射状排列,大多为CR阴性。Reln阳性细胞始终与先驱细胞分离,因此不直接参与预板的分隔。我们的数据表明,人类新皮质预板的神经元组成比一般描述的更为复杂,并且各种神经元参与了CP出现之前的一系列事件。