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鸡胚后脑菱脑节边界处的细胞形态和细胞外空间

Cellular morphology and extracellular space at rhombomere boundaries in the chick embryo hindbrain.

作者信息

Heyman I, Kent A, Lumsden A

机构信息

MRC Brain Development Programme, United Medical School, Guy's Hospital, London, England.

出版信息

Dev Dyn. 1993 Dec;198(4):241-53. doi: 10.1002/aja.1001980402.

Abstract

The chick embryo hindbrain is a segmented region of the CNS characterised by repeated blocks of neuroepithelial cells, known as rhombomeres. Individual rhombomeres are polyclonal compartments, defined both by cell lineage restriction and by the restricted expression of development control genes, that later acquire specific patterns of neuronal differentiation and axon outgrowth. The interfaces between adjacent rhombomeres are defined by boundaries across which cells do not move; the boundaries contain specialised cells and are preferentially colonised at early stages of development by extending axons. In this study, routine electron microscopy and high-pressure cryopreservation, a technique that avoids artifacts of chemical fixation, have been used to examine the morphology of rhombomere boundaries through a staged series of chick embryos. We find that the boundary regions contain enlarged extracellular spaces and that these form conduits for axons subsequently extending in the circumferential plane of the hindbrain. Labeling the ventricular surface of the neuroepithelium with DiI crystals in aqueous suspension revealed the morphology of individual cells in the intact neural tube, and demonstrated unusual fan-shaped arrays of cells at the boundaries. These findings contribute further to the evidence that cells at rhombomere boundaries differ from those in rhombomere centres, and leads to hypotheses about both the mechanism of development of the boundaries, and the role they may play in hindbrain patterning.

摘要

鸡胚后脑是中枢神经系统的一个分节区域,其特征是有重复的神经上皮细胞块,即菱脑节。单个菱脑节是多克隆区室,由细胞谱系限制和发育控制基因的限制性表达所定义,随后获得特定的神经元分化和轴突生长模式。相邻菱脑节之间的界面由细胞不移动的边界所定义;这些边界包含特化细胞,并且在发育早期优先被延伸的轴突所占据。在本研究中,常规电子显微镜和高压冷冻保存(一种避免化学固定假象的技术)被用于通过一系列不同发育阶段的鸡胚来检查菱脑节边界的形态。我们发现边界区域含有扩大的细胞外间隙,并且这些间隙形成了轴突随后在后脑圆周平面延伸的管道。用悬浮在水中的DiI晶体标记神经上皮的脑室表面,揭示了完整神经管中单个细胞的形态,并在边界处显示出不寻常的扇形细胞阵列。这些发现进一步为菱脑节边界处的细胞与菱脑节中心处的细胞不同这一证据提供了支持,并引发了关于边界发育机制及其在后脑模式形成中可能发挥的作用的假说。

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