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胎兔发育中海马体的电生理学与形态学

Electrophysiology and morphology of the developing hippocampus of fetal rabbits.

作者信息

Schwartzkroin P A, Kunkel D D

出版信息

J Neurosci. 1982 Apr;2(4):448-62. doi: 10.1523/JNEUROSCI.02-04-00448.1982.

Abstract

The pyramidal neurons of fetal rabbit hippocampus were studied using intracellular electrophysiological techniques in in vitro slice preparations. Correlative light and electron microscopic analyses were carried out on hippocampus during the 21st through the 29th day of fetal gestation. In intracellular experiments, neurons with all-or-none action potentials and near-adult level resting potentials were found even in the youngest preparations. Synaptic activity, however, was rare until about 24 days of gestation. CA1 neurons showed primarily excitatory synaptic potentials during fetal development, whereas CA3 neurons displayed both inhibitory and excitatory postsynaptic potentials at early stages. Anatomical studies suggested that pyramidal cell precursors were still dividing and migrating at 21 days; by 29 days, cellular migration was completed, and cellular intercommunication in the form of synapses was increasing. These experiments demonstrate that fetal central nervous system (CNS) material can be studied electrophysiologically without growing tissue in culture. Our results suggest that the newly differentiated hippocampal neurons have a limited repertoire of activities. Such data may provide a link between in vivo studies of postnatal CNS development and cell and tissue culture investigations of the properties of immature neurons.

摘要

利用细胞内电生理技术,在体外脑片标本中对胎兔海马的锥体神经元进行了研究。在胎儿妊娠第21天至第29天期间,对海马进行了相关的光镜和电镜分析。在细胞内实验中,即使在最早期的标本中,也发现了具有全或无动作电位和接近成年水平静息电位的神经元。然而,直到妊娠约24天时,突触活动都很少见。在胎儿发育过程中,CA1神经元主要表现为兴奋性突触电位,而CA3神经元在早期则同时表现出抑制性和兴奋性突触后电位。解剖学研究表明,锥体细胞前体在21天时仍在分裂和迁移;到29天时,细胞迁移完成,以突触形式的细胞间通讯正在增加。这些实验表明,可以在不进行组织培养生长的情况下,用电生理学方法研究胎儿中枢神经系统(CNS)材料。我们的结果表明,新分化的海马神经元的活动能力有限。这些数据可能为出生后中枢神经系统发育的体内研究与未成熟神经元特性的细胞和组织培养研究之间提供联系。

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Development of rabbit hippocampus: physiology.
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