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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >GABA(b) receptors differentially regulate hippocampal CA1 excitatory synaptic transmission across postnatal development in the rat.
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GABA(b) receptors differentially regulate hippocampal CA1 excitatory synaptic transmission across postnatal development in the rat.

机译:GABA(b)受体在大鼠出生后发育过程中差异调节海马CA1兴奋性突触传递。

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摘要

Depression of excitatory postsynaptic potentials (EPSPs) by the GABA(b) agonist, baclofen, was compared in hippocampal slices from juvenile (postnatal day (P) 15-21) and young adult (P28-35) rats. EPSP inhibition following baclofen application was not different between age groups, however, paired-pulse facilitation (PPF) increased more in young adults relative to juveniles. The differential effect of baclofen on PPF was not due to tonic receptor activity, since the GABA(b) antagonist, saclofen, did not differentially modify PPF. The baclofen-mediated increase in PPF for juvenile slices could be enhanced by first increasing transmitter release through an increased bath Ca2+ concentration. These findings suggests that ligand-mediated presynaptic depression is inversely related to the level of transmitter release and maturation of presynaptic inhibition is related to development of release.
机译:比较了幼年(出生后(P)15-21)和成年(P28-35)大鼠海马片中GABA(b)激动剂巴氯芬对兴奋性突触后电位(EPSPs)的抑制作用。巴氯芬使用后的EPSP抑制作用在各个年龄组之间没有差异,但是,成年男子的成对脉冲促进作用(PPF)增加得更多。巴氯芬对PPF的差异作用不是由于补药受体活性,因为GABA(b)拮抗剂沙氯芬没有差异地修饰PPF。通过先增加浴液Ca2 +的浓度来增加递质的释放,可以增强巴氯芬介导的青少年切片PPF的增加。这些发现表明,配体介导的突触前抑制与递质释放水平成反比,而突触前抑制的成熟与释放的发展有关。

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