gaba诱导的大鼠脊髓去极化的生理功能。

L Ziskind-Conhaim
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引用次数: 0

摘要

γ -氨基丁酸(GABA)是成熟脊髓中的主要抑制性神经递质之一。它通过突触后和突触前抑制机制有效地抑制突触传递。在脊髓发育的早期,GABA的功能尚不清楚,当氨基酸在大多数神经元中短暂表达时,它会使神经元去极化而不是超极化。本文综述了GABA在脊髓分化早期调节突触传递、促进神经元发育、调节神经元pH等可能的生理作用。有人提出,尽管其去极化作用,GABA作为抑制性神经递质,也可能作为神经营养剂的功能。
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Physiological functions of GABA-induced depolarizations in the developing rat spinal cord.

Gamma-aminobutyric acid (GABA) is one of the principle inhibitory neurotransmitters in the mature spinal cord. It effectively suppresses synaptic transmission by mechanisms of postsynaptic and presynaptic inhibition. The function of GABA is less well understood early in spinal cord development, when the amino acid is transiently expressed in most neurons, and it depolarizes instead of hyperpolarizes neurons. This article reviews the possible physiological roles of GABA in modulating synaptic transmission, promoting neuronal development, and regulating neuronal pH during early stages of spinal cord differentiation. It is proposed that despite its depolarizing action, GABA acts as an inhibitory neurotransmitter that may also function as a neurotrophic agent.

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GABAergic cells and signals in CNS development. Developmental expression of cerebellar GABAA-receptor subunit mRNAs. Nature versus nurture. Early developmental modulation of GABAA receptor function. Influence on adaptive responses. Effects of gamma-aminobutyric acid (GABA) on synaptogenesis and synaptic function. GABA as a trophic factor for developing monoamine neurons.
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