Schoenwolf G C, Franks M V
Dev Biol. 1984 Oct;105(2):257-72. doi: 10.1016/0012-1606(84)90284-7.
It is widely believed that changes in cell shapes play important roles in the bending or folding of epithelial sheets, but few studies have actually examined cell shapes in such systems. We have determined the percentages of four types of neuroepithelial cells (i.e., spindle, flask, inverted flask, and globular) present during bending of the avian neural plate. Serial transverse plastic sections through seven craniocaudal levels of the neuroepithelium were examined. Four distinct periods of bending were chosen based on the morphology of the neuroepithelium: period I, flat neural plate; period II, midline furrow without elevation of the neural folds; period III, midline furrow with elevation; and period IV, bilateral furrows with convergence of the neural folds. We compared statistically the percentages of different cell types in bending (furrowed) and nonbending regions of the neuroepithelium, as well as changes in cell shapes with time. Our results demonstrate that dramatic changes in cell shapes occur in the midline and bilateral furrows during bending of the neural plate, such that as many as 70% of the neuroepithelial cells in the midline and 55% in the bilateral furrows are wedge shaped by the end of bending. In contrast, less than 35% of the neuroepithelial cells are wedge shaped outside of the three morphological loci of bending. These results support the hypothesis that localized changes in cell morphologies have roles in bending and shaping of the neural plate, but exactly how cells change shapes and what precise roles such changes play in bending remain to be determined.
人们普遍认为细胞形状的变化在上皮细胞层的弯曲或折叠过程中起着重要作用,但实际上很少有研究在这样的系统中检测细胞形状。我们已经确定了在鸡胚神经板弯曲过程中存在的四种神经上皮细胞类型(即纺锤形、烧瓶形、倒烧瓶形和球形)的百分比。检查了通过神经上皮七个头尾水平的连续横向塑料切片。根据神经上皮的形态选择了四个不同的弯曲阶段:阶段I,扁平神经板;阶段II,中线沟,神经褶未隆起;阶段III,中线沟且有隆起;阶段IV,双侧沟,神经褶汇合。我们对神经上皮弯曲(有沟)和未弯曲区域中不同细胞类型的百分比以及细胞形状随时间的变化进行了统计学比较。我们的结果表明,在神经板弯曲过程中,中线和双侧沟处的细胞形状发生了显著变化,以至于在弯曲结束时,中线处多达70%的神经上皮细胞和双侧沟处55%的神经上皮细胞呈楔形。相比之下,在三个弯曲形态学位点之外,不到35%的神经上皮细胞呈楔形。这些结果支持了这样一种假设,即细胞形态的局部变化在神经板的弯曲和塑形中起作用,但细胞究竟如何改变形状以及这些变化在弯曲中具体起什么作用仍有待确定。