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颅神经管形成神经嵴的调节能力。

Regulative capacity of the cranial neural tube to form neural crest.

作者信息

Scherson T, Serbedzija G, Fraser S, Bronner-Fraser M

机构信息

Developmental Biology Center, University of California, Irvine 92717.

出版信息

Development. 1993 Aug;118(4):1049-62. doi: 10.1242/dev.118.4.1049.

Abstract

In avian embryos, cranial neural crest cells emigrate from the dorsal midline of the neural tube shortly after neural tube closure. Previous lineage analyses suggest that the neural crest is not a pre-segregated population of cells within the neural tube; instead, a single progenitor in the dorsal neural tube can contribute to neurons in both the central and the peripheral nervous systems (Bronner-Fraser and Fraser, 1989 Neuron 3, 755-766). To explore the relationship between the 'premigratory' neural crest cells and the balance of the cells in the neural tube in the midbrain and hindbrain region, we have challenged the fate of these populations by ablating the neural crest either alone or in combination with the adjoining ventral portions of the neural tube. Focal injections of the vital dye, DiI, into the neural tissue bordering the ablated region demonstrate that cells at the same axial level, in the lateral and ventral neural tube, regulate to reconstitute a population of neural crest cells. These cells emigrate from the neural tube, migrate along normal pathways according to their axial level of origin and appear to give rise to a normal range of derivatives. This regulation following ablation suggests that neural tube cells normally destined to form CNS derivatives can adjust their prospective fates to form PNS and other neural crest derivatives until 4.5-6 hours after the time of normal onset of emigration from the neural tube.

摘要

在鸟类胚胎中,神经管闭合后不久,颅神经嵴细胞就从神经管的背中线迁出。先前的谱系分析表明,神经嵴并非神经管内预先分离的细胞群体;相反,神经管背侧的单个祖细胞可分化为中枢神经系统和周围神经系统的神经元(Bronner-Fraser和Fraser,1989年,《神经元》第3卷,755 - 766页)。为了探究中脑和后脑区域“迁移前”神经嵴细胞与神经管内细胞平衡之间的关系,我们通过单独切除神经嵴或联合切除神经管相邻的腹侧部分来改变这些细胞群体的命运。将活性染料DiI局部注射到与切除区域相邻的神经组织中,结果表明,在同一轴向水平的神经管外侧和腹侧的细胞会进行调节,以重新形成一群神经嵴细胞。这些细胞从神经管迁出,根据其起源的轴向水平沿正常路径迁移,并且似乎能产生正常范围的衍生物。切除后的这种调节表明,正常情况下注定要形成中枢神经系统衍生物的神经管细胞可以调整其预期命运,以形成周围神经系统和其他神经嵴衍生物,直至从神经管正常开始迁出后的4.5 - 6小时。

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