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小鼠神经板弯曲过程中神经上皮细胞形态的定量分析。

Quantitative analyses of neuroepithelial cell shapes during bending of the mouse neural plate.

作者信息

Smith J L, Schoenwolf G C, Quan J

机构信息

Division of Neurosurgery, University of Utah Medical Center, Salt Lake City 84132.

出版信息

J Comp Neurol. 1994 Apr 1;342(1):144-51. doi: 10.1002/cne.903420113.

Abstract

Despite a wealth of information about cell behaviors contributing to neurulation in chick embryos, similar behaviors in mouse embryos have yet to be well characterized. This study examines cell behaviors occurring during bending of the mouse neural plate, in particular, qualitative and quantitative changes in neuroepithelial cell shape. Our current results demonstrate that in mouse embryos 1) the median hinge point (MHP), a localized region of neural plate that becomes anchored to the underlying prechordal plate mesoderm or notochord/notochordal plate and forms a midline longitudinal furrow around which folding of the remaining neural plate (i.e., the part of the neural plate not involved in MHP formation) occurs, develops during stages of neural fold elevation; 2) the MHP is enriched with wedge-shaped neuroepithelial cells but has significantly fewer spindle-shaped, inverted wedge-shaped, and globular neuroepithelial cells than do the adjacent paired lateral areas of the neuroepithelium (L); and 3) each L is enriched with spindle-shaped, inverted wedge-shaped, and globular neuroepithelial cells but has significantly fewer wedge-shaped neuroepithelial cells than does the MHP. Thus wedging of neuroepithelial cells occurs during bending of the mouse neural plate and is localized to the MHP during neural fold elevation. Similarly, previous studies in the chick have shown that neuroepithelial cells become wedge shaped during bending of the neural plate and that such cell wedging is localized to the MHP during neural fold elevation. Such studies also have shed light on the roles of MHP formation and localized wedging of neuroepithelial cells within the MHP in the chick; however, such roles have yet to be elucidated in the mouse.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

尽管已有大量关于鸡胚神经胚形成过程中细胞行为的信息,但小鼠胚胎中的类似行为尚未得到充分表征。本研究考察了小鼠神经板弯曲过程中发生的细胞行为,特别是神经上皮细胞形状的定性和定量变化。我们目前的结果表明,在小鼠胚胎中:1)正中铰链点(MHP),即神经板的一个局部区域,它会锚定在下方的脊索前板中胚层或脊索/脊索板上,并形成一条中线纵向沟,其余神经板(即不参与MHP形成的神经板部分)围绕该沟发生折叠,在神经褶抬高阶段发育形成;2)MHP富含楔形神经上皮细胞,但与神经上皮相邻的成对侧区(L)相比,纺锤形、倒楔形和球形神经上皮细胞显著减少;3)每个L区富含纺锤形、倒楔形和球形神经上皮细胞,但与MHP相比,楔形神经上皮细胞显著减少。因此,神经上皮细胞的楔入发生在小鼠神经板弯曲过程中,并在神经褶抬高时定位于MHP。同样,先前在鸡胚中的研究表明,神经上皮细胞在神经板弯曲时变成楔形,且这种细胞楔入在神经褶抬高时定位于MHP。这些研究也揭示了鸡胚中MHP形成以及MHP内神经上皮细胞局部楔入的作用;然而,这些作用在小鼠中尚未阐明。(摘要截断于250字)

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