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发育过程中脊髓灰质和白质对神经元附着及神经突生长的通透性变化:一项采用“冷冻培养”生物测定法的研究

Changes in permissivity for neuronal attachment and neurite outgrowth of spinal cord grey and white matters during development: a study with the 'cryoculture' bioassay.

作者信息

Sagot Y, Swerts J P, Cochard P

机构信息

Centre de Biologie du Développement URA CNRS 675, Université Paul Sabatier, Toulouse, France.

出版信息

Brain Res. 1991 Mar 8;543(1):25-35. doi: 10.1016/0006-8993(91)91044-2.

Abstract

We have used the recently developed cryoculture bioassay (Carbonetto et al., J. Neurosci., 7 (1987) 610-620) to document changes during development of CNS tissular ability to support nerve fiber growth. Neuronal attachment and neurite outgrowth of purified neurons cultured on tissue sections of rat spinal cord at various stages of development were quantified. Nerve fiber growth permissivity increased during embryonic stages, reaching as postnatal days 2-4 (P2-P4) a maximum value, higher than that found on adult PNS tissue sections. This permissivity diminished rapidly thereafter, indicating that early postnatally, the nerve fiber growth supporting ability of the CNS environment shifts abruptly from an increasingly permissive mode to an increasingly non-permissive status. Furthermore, after P4, neurite outgrowth permissivity diminished in parallel on white and grey matters, whereas neuronal attachment declined much more drastically on white matter than on grey matter. This indicates that the progressive loss of spinal cord ability to support nerve fiber growth is attributable to both grey and white matters. In several instances it also appeared that neuronal adhesion was not necessarily followed by a comparable level of nerve fiber growth, suggesting that these two processes could be regulated by different factors.

摘要

我们使用了最近开发的低温培养生物测定法(Carbonetto等人,《神经科学杂志》,7(1987年)610 - 620)来记录中枢神经系统组织支持神经纤维生长能力在发育过程中的变化。对在大鼠脊髓不同发育阶段的组织切片上培养的纯化神经元的神经元附着和神经突生长进行了量化。神经纤维生长允许性在胚胎阶段增加,在出生后第2 - 4天(P2 - P4)达到最大值,高于在成年外周神经系统组织切片上发现的值。此后这种允许性迅速降低,表明在出生后早期,中枢神经系统环境支持神经纤维生长的能力从逐渐允许的模式突然转变为逐渐不允许的状态。此外,在P4之后,神经突生长允许性在白质和灰质上平行降低,而神经元附着在白质上比在灰质上下降得更为剧烈。这表明脊髓支持神经纤维生长能力的逐渐丧失归因于白质和灰质两者。在几个实例中还似乎表明,神经元黏附并不一定伴随着相当水平的神经纤维生长,这表明这两个过程可能受不同因素调节。

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