Are neuronal precursor cells committed to coexpress different neuroactive substances in early amphibian neurulae?

F. Pituello, S. Boudannaoui, F. Foulquier, A.M. Duprat
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引用次数: 9

Abstract

Considering the initial expression of neurotransmitters and neuropeptides immediately after neural induction in amphibian embryos, we previously pointed out that a neuronal cell population emerges from neural plate (NP) and neural fold (NF) expressing very early specific cholinergic, catecholaminergic, GABAergic and peptidergic traits. The purpose of the present work was to investigate the extent to which the neuroblasts that are present in the neurectoderm immediately after gastrulation are committed to give rise to multiple subsets of neurons containing various combinations of neuroactive transmitters rather than to different subpopulations of neurochemically homogeneous neurons. By means of double immunocytochemical localization with a monoclonal TOH-antibody and polyclonal antibodies against GABA or somatostatin, no coexistence of neurotransmitters and neuropeptide was ever found in neuronal subpopulations arising in vitro from NP or NF. The early emergence, under the same conditions, of distinct neuronal subpopulations as a consequence of neural induction strongly suggests that, at the gastrula stage, the neural precursor population most probably does not constitute a homogeneous set of cells.

在早期两栖动物神经中,神经前体细胞是否参与了不同神经活性物质的共表达?
考虑到两栖动物胚胎神经诱导后神经递质和神经肽的初始表达,我们之前指出,神经板(NP)和神经折叠(NF)中出现了非常早期表达特异性胆碱能、儿茶酚胺能、gaba能和多肽能特征的神经元细胞群。本研究的目的是研究原肠胚形成后立即存在于神经胚层中的神经母细胞在多大程度上致力于产生含有各种神经活性递质组合的多个神经元亚群,而不是神经化学上均匀的不同神经元亚群。通过单克隆toh抗体和抗GABA或生长抑素的多克隆抗体的双重免疫细胞化学定位,在NP或NF产生的神经亚群中未发现神经递质和神经肽共存。在相同条件下,由于神经诱导,不同的神经元亚群的早期出现强烈表明,在原肠胚阶段,神经前体群体很可能不构成一组均匀的细胞。
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