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首页> 外文期刊>Brain research >Pb2+ impairs GABAergic synaptic transmission in rat hippocampal slices: a possible involvement of presynaptic calcium channels.
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Pb2+ impairs GABAergic synaptic transmission in rat hippocampal slices: a possible involvement of presynaptic calcium channels.

机译:Pb2 +损害大鼠海马切片中的GABA能突触传递:突触前钙通道可能参与其中。

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Pb2+ is a common pollutant that causes a wide variety of detrimental effects on developing central nervous system, including cognitive deficit. However, the mechanisms of Pb2+ neurotoxicity remain to be elucidated. GABAergic synaptic transmission in hippocampus is implicated in learning and memory. In the present study, we examined the effects of Pb2+ on GABA(A)-receptor-mediated inhibitory postsynaptic currents (IPSCs), recorded on CA1 pyramidal neurons in rat hippocampal slices, using whole-cell patch clamp recording. Pb2+ significantly inhibited the peak amplitude of evoked IPSCs and increased paired pulse ratio. In addition, Pb2+ (2-50 microM) significantly diminished the frequency of spontaneous IPSCs in a concentration-dependent manner with an IC(50) of 7.56 microM, without changing the amplitude of spontaneous IPSCs. However, Pb2+ (10 microM) did not alter the frequency and amplitude of miniature IPSCs. It was indicated that Pb2+ impaired GABAergic synaptic transmission via a presynaptic mechanism, inhibiting action potential-dependent GABA release. Interestingly, the inhibition of spontaneous IPSC frequency induced by 10 microM Pb2+ was significantly attenuated either in the presence of 100 muM Cd2+ or in a low-calcium (0.5 mM) bath. It suggested the involvement of voltage-gated calcium channels (VGCC) in Pb2+'s inhibition of GABA release. This study provided electrophysiological evidence from developing hippocampal slices to support that Pb2+ inhibited action potential-dependent GABA release by inhibiting presynaptic VGCC, which might be a mechanism for Pb2+ -induced cognitive deficit.
机译:Pb2 +是一种常见污染物,会对发展中的中枢神经系统造成多种有害影响,包括认知缺陷。但是,Pb2 +神经毒性的机制仍有待阐明。海马中的GABA能突触传递与学习和记忆有关。在本研究中,我们使用全细胞膜片钳记录,检查了Pb2 +对GABA(A)-受体介导的抑制突触后电流(IPSC)的作用,该电流记录在大鼠海马切片的CA1锥体神经元上。 Pb2 +显着抑制了诱发的IPSC的峰值幅度并增加了配对脉冲比率。此外,Pb2 +(2-50 microM)以浓度依赖的方式显着降低了自发IPSC的频率,IC(50)为7.56 microM,而没有改变自发IPSC的幅度。但是,Pb2 +(10 microM)不会改变微型IPSC的频率和幅度。结果表明,Pb2 +通过突触前机制损害了GABA能突触传递,抑制了动作电位依赖性GABA的释放。有趣的是,在100μMCd2 +存在下或在低钙(0.5 mM)浴液中,由10 microM Pb2 +诱导的自发IPSC频率的抑制作用显着减弱。这表明电压门控钙通道(VGCC)参与Pb2 +抑制GABA释放。这项研究提供了来自正在发育的海马切片的电生理证据,以支持Pb2 +通过抑制突触前VGCC抑制动作电位依赖性GABA的释放,这可能是Pb2 +引起的认知缺陷的一种机制。

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