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首页> 外文期刊>The Journal of Physiology >Spontaneous synaptic activity is required for the formation of functional GABAergic synapses in the developing rat hippocampus.
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Spontaneous synaptic activity is required for the formation of functional GABAergic synapses in the developing rat hippocampus.

机译:在发育中的大鼠海马中,功能性GABA能突触的形成需要自发的突触活性。

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摘要

Here we examine the role of the spontaneous synaptic activity generated by the developing rat hippocampus in the formation of functional gamma-aminobutyric acid (GABA) synapses. Intact hippocampal formations (IHFs) were dissected at birth and incubated for 1 day in control or tetrodotoxin (TTX)-supplemented medium at 25 degrees C. After the incubation, miniature GABA(A)-mediated postsynaptic currents (mGABA(A)-PSCs) were recorded in whole-cell voltage-clamped CA3 pyramidal neurones from IHF-derived slices. After 1 day in vitro in control medium, the frequency of mGABA(A)-PSCs was similar to that recorded in acute slices obtained 1 day after birth, but significantly higher than the frequency recorded from acute slices just after birth. These results suggest that the factors required in vivo for the formation of functional GABAergic synapses are preserved in the IHFs in vitro. The frequency increase was prevented when IHFs were incubated for 1 day with TTX. TTX treatment affected neither the morphology of CA3 pyramidal neurones nor cell viability. The TTX effects were reproduced when IHFs were incubated in the presence of glutamatergic or GABAergic ionotropic receptor antagonists or in high divalent cationic medium. The present results indicate that the spontaneous synaptic activity generated by the developing hippocampus is a key player in the formation of functional GABAergic synapses, possibly via network events requiring both glutamatergic and GABAergic receptors.
机译:在这里,我们检查了由发育中的大鼠海马产生的自发突触活动在功能性γ-氨基丁酸(GABA)突触形成中的作用。在出生时解剖完整的海马结构(IHF),并在25摄氏度下在对照或补充河豚毒素(TTX)的培养基中孵育1天。孵育后,微型GABA(A)介导的突触后电流(mGABA(A)-PSCs )记录在IHF衍生切片的全细胞电压钳制CA3锥体神经元中。在对照培养基中体外培养1天后,mGABA(A)-PSC的频率与出生后1天获得的急性切片中记录的频率相似,但显着高于刚出生后从急性切片中记录的频率。这些结果表明,在体外IHF中保留了形成功能性GABA能突触所需的体内因素。当IHF与TTX孵育1天时,可防止频率增加。 TTX处理既不影响CA3锥体神经元的形态,也不影响细胞活力。当IHF在谷氨酸能或GABA能离子型受体拮抗剂存在下或在高二价阳离子介质中孵育时,会重现TTX效应。目前的结果表明,由发育中的海马体产生的自发性突触活性是功能性GABA能突触形成的关键因素,可能是通过同时需要谷氨酸能和GABA能受体的网络事件引起的。

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