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鸡胚神经板弯曲过程中的细胞周期与神经上皮细胞形态

Cell cycle and neuroepithelial cell shape during bending of the chick neural plate.

作者信息

Smith J L, Schoenwolf G C

出版信息

Anat Rec. 1987 Jun;218(2):196-206. doi: 10.1002/ar.1092180215.

Abstract

Neuroepithelial cells change shape from spindle-like to wedge-like within three restricted areas (hinge points) of the bending neural plate. The mechanisms underlying these localized cell shape changes and the specific role that these changes play in bending are unclear. This study was designed to determine whether changes in neuroepithelial cell shape involve basal cellular expansion owing to alteration of the cell cycle. Neurulating chick embryos were treated with colchicine to arrest and accumulate cells in metaphase, and colchicine indices and cell generation times were calculated for the neural plate. During bending of the neural plate, cell generation time in the median hinge point, which contains predominantly wedge-shaped cells, was significantly longer than that in adjacent lateral areas of the neural plate, which contain predominantly spindle-shaped cells. In addition, cell generation time in the flat neural plate, which contains predominantly spindle-shaped cells and has not yet differentiated into the median hinge point and lateral subdivisions, was identical to that in lateral areas of the bending neural plate but was significantly shorter than that in the median hinge point. These results support the hypothesis that changes in neuroepithelial cell shape from spindle-like to wedge-like involve basal cellular expansion owing to alteration of the cell cycle. Additional tests of this hypothesis and studies on the role of localized cell shape changes in neurulation are in progress.

摘要

神经上皮细胞在弯曲神经板的三个受限区域(铰链点)内从纺锤形转变为楔形。这些局部细胞形状变化的潜在机制以及这些变化在弯曲过程中所起的具体作用尚不清楚。本研究旨在确定神经上皮细胞形状的变化是否涉及由于细胞周期改变导致的基底细胞扩张。用秋水仙碱处理神经胚形成期的鸡胚,使细胞停滞并积累在中期,计算神经板的秋水仙碱指数和细胞生成时间。在神经板弯曲过程中,主要包含楔形细胞的中间铰链点处的细胞生成时间明显长于神经板相邻外侧区域,后者主要包含纺锤形细胞。此外,主要包含纺锤形细胞且尚未分化为中间铰链点和外侧细分区域的扁平神经板中的细胞生成时间,与弯曲神经板外侧区域的相同,但明显短于中间铰链点处的。这些结果支持了以下假设:神经上皮细胞形状从纺锤形到楔形的变化涉及由于细胞周期改变导致的基底细胞扩张。关于这一假设的进一步测试以及局部细胞形状变化在神经胚形成中作用的研究正在进行中。

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