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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >LONG-TERM POTENTIATION OF SYNAPTIC RESPONSE AND INTRINSIC EXCITABILITY IN NEURONS OF THE RAT MEDIAL VESTIBULAR NUCLEI
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LONG-TERM POTENTIATION OF SYNAPTIC RESPONSE AND INTRINSIC EXCITABILITY IN NEURONS OF THE RAT MEDIAL VESTIBULAR NUCLEI

机译:大鼠中庭前庭核神经元的突触反应的长期强化和内在兴奋性

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摘要

Using intracellular recordings, we investigated the effects of high frequency stimulation (HFS) of the primary vestibular afferents on the evoked excitatory postsynaptic potential (EPSP) and intrinsic excitability (IE) of type-A and type-B neurons of the medial vestibular nucleus (MVN), in male rat brainstem slices. HFS induces long-term potentia-tion (LTP) of both EPSP and IE, which may occur in combination or separately. Synaptic LTP is characterized by an increase in the amplitude, slope and decay time constant of EPSP and IE-LTP through enhancements of spontaneous and evoked neuron firing and of input resistance (Rin). Moreover, IE-LTP is associated with a decrease in action potential afte-rhyperpolarization (AHP) amplitude and an increase in inter-spike slope steepness (ISS). The more frequent effects of HFS are EPSP-LTP in type-B neurons and IE-LTP in type-A neurons. In addition, the development of EPSP-LTP is fast in type-B neurons but slow in type-A, whereas IE-LTP develops slowly in both types. We have demonstrated that activation of N-methyl-D aspartate receptors (NMDARs) is only required for EPSP-LTP induction, whereas metabotropic glutamate receptors type-1 (mGluR1) are necessary for IE-LTP induction as well as the full development and maintenance of EPSP-LTP. Taken together, these findings demonstrate that brief and intense activation of vestibular afferent input to the MVN neurons may provoke synaptic LTP and/or IE-LTP that, induced in combination or separately, may assure the different selectivity of the MVN neuron response enhancement to the afferent signals.
机译:使用细胞内记录,我们调查了高频刺激(HFS)对前庭内侧内侧核的A型和B型神经元诱发的兴奋性突触后突触电位(EPSP)和固有兴奋性(IE)的影响。 MVN),在雄性大鼠脑干切片中。 HFS会诱导EPSP和IE的长期增效(LTP),这可能会组合或单独出现。突触LTP的特征是EPSP和IE-LTP的幅度,斜率和衰减时间常数的增加是通过增强自发和诱发的神经元放电以及输入电阻(Rin)来实现的。此外,IE-LTP与动作电位后超极化(AHP)幅度的减小和峰值间斜率陡度(ISS)的增大相关。 HFS最常见的影响是B型神经元中的EPSP-LTP和A型神经元中的IE-LTP。此外,EPSP-LTP的发展在B型神经元中快,但在A型中慢,而IE-LTP在这两种类型中都发展缓慢。我们已经证明,激活N-甲基-D天冬氨酸受体(NMDARs)仅对于EPSP-LTP诱导是必需的,而代谢型谷氨酸受体1型(mGluR1)对于IE-LTP诱导以及完整的开发和维护是必需的EPSP-LTP。综上所述,这些发现表明,MVN神经元的前庭传入输入的短暂而强烈的激活可能会引起突触LTP和/或IE-LTP,这些突触LTP和/或IE-LTP可以联合或单独诱导,从而确保MVN神经元对增强神经元反应的选择性不同。传入信号。

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