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非随机定向细胞分裂在神经板塑形和弯曲中的作用。

Role of nonrandomly oriented cell division in shaping and bending of the neural plate.

作者信息

Sausedo R A, Smith J L, Schoenwolf G C

机构信息

Department of Neurobiology and Anatomy, University of Utah School of Medicine, Salt Lake City 84132, USA.

出版信息

J Comp Neurol. 1997 May 19;381(4):473-88.

PMID:9136804
Abstract

Neural plate shaping and bending are crucial to the process of neural tube formation. Shaping requires intrinsic forces generated by alterations in neuroepithelial cell behavior, whereas bending requires similar intrinsic forces and extrinsic forces generated by alterations in cell behaviors outside the neural plate. This study evaluates the role of nonrandomly oriented cell division in neural plate shaping and epidermal ectoderm expansion during bending by examining mitotic spindle orientation in the neuroepithelium and epidermal ectoderm throughout neurulation. Neuroepithelial mitotic spindles are oriented preferentially in the rostrocaudal plane, suggesting a role for nonrandomly oriented (i.e., rostrocaudal) neuroepithelial cell division in longitudinal lengthening of the neural plate during shaping. Epidermal ectoderm mitotic spindles are oriented preferentially in both rostrocaudal and mediolateral planes, suggesting a role for nonrandomly oriented cell division in epidermal ectoderm elongation and expansion. In neural plate and epidermal ectoderm isolates separated prior to shaping and bending, mitotic spindles continued to be oriented preferentially in the rostrocaudal plane; however, a preferential mediolateral mitotic spindle orientation could not be demonstrated in the epidermal ectoderm isolates. We conclude that the nonrandom rostrocaudal orientation of cell division in the neuroepithelium and epidermal ectoderm is an autonomous process, occurring in the absence of forces from adjacent tissues, whereas the nonrandom mediolateral orientation of cell division in the epidermal ectoderm is dependent upon interactions with the neural plate.

摘要

神经板的塑形和弯曲对于神经管形成过程至关重要。塑形需要神经上皮细胞行为改变产生的内在力,而弯曲则需要类似的内在力以及神经板外细胞行为改变产生的外在力。本研究通过检查整个神经胚形成过程中神经上皮和表皮外胚层的有丝分裂纺锤体方向,评估非随机定向细胞分裂在弯曲过程中神经板塑形和表皮外胚层扩张中的作用。神经上皮有丝分裂纺锤体优先沿头尾平面定向,这表明非随机定向(即头尾方向)的神经上皮细胞分裂在塑形过程中神经板纵向延长中发挥作用。表皮外胚层有丝分裂纺锤体优先沿头尾平面和内外侧平面定向,这表明非随机定向细胞分裂在表皮外胚层伸长和扩张中发挥作用。在塑形和弯曲之前分离的神经板和表皮外胚层分离物中,有丝分裂纺锤体继续优先沿头尾平面定向;然而,在表皮外胚层分离物中未显示出优先的内外侧有丝分裂纺锤体定向。我们得出结论,神经上皮和表皮外胚层中细胞分裂的非随机头尾定向是一个自主过程,在没有来自相邻组织的力的情况下发生,而表皮外胚层中细胞分裂的非随机内外侧定向取决于与神经板的相互作用。

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