Neural induction.

A M Duprat, L Gualandris, P Kan, F Pituello, J P Saint-Jeannet, S Boudannaoui
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Abstract

The molecular mechanism of neural induction of embryonic cells is an important but poorly understood problem in neuroembryology. Glycoconjugates in the target cell plasma membrane and/or its structural organization play a key role in the reception of the inductive signal. It is the competent target tissue itself which probably contains the capacity and specificity for neuralization. However, the mechanism of transmission of the signal which leads to activation of the intracellular machinery involved in the process of neural determination remains to be elucidated. With respect to the information acquired by the target cells during neural induction, and the early events in differentiation, neuronal precursor cells have been shown to have acquired the potential to display a high degree of biochemical and phenotypic differentiation, even in the absence of further embryonic influences.

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神经诱导。
胚胎细胞神经诱导的分子机制是神经胚胎学中一个重要但却知之甚少的问题。靶细胞膜上的糖缀合物和/或其结构组织在感应信号的接收中起着关键作用。它是有能力的靶组织本身,可能包含神经化的能力和特异性。然而,导致参与神经决定过程的细胞内机制激活的信号传递机制仍有待阐明。关于目标细胞在神经诱导过程中获得的信息和分化的早期事件,神经前体细胞已被证明具有显示高度生化和表型分化的潜力,即使在没有进一步的胚胎影响的情况下。
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The pineal gland of the Indian palm squirrel, Funambulus pennanti (Wroughton). APUD-like cells in the primitive gut of a 27 day old human embryo. Neural induction. Morphogenesis of the adrenal gland of Triturus cristatus carnifex during larval development and metamorphosis. [Testicular graft on the chick embryo].
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