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听觉惊吓通路中的突触可塑性:短期习惯化的神经基础?

Synaptic plasticity in the acoustic startle pathway: the neuronal basis for short-term habituation?

作者信息

Weber Maruschka, Schnitzler Hans-Ulrich, Schmid Susanne

机构信息

Animal Physiology, Zoological Institute, University of Tübingen, Auf der Morgenstelle 28, D-72076 Tübingen, Germany.

出版信息

Eur J Neurosci. 2002 Oct;16(7):1325-32. doi: 10.1046/j.1460-9568.2002.02194.x.

DOI:10.1046/j.1460-9568.2002.02194.x
PMID:12405993
Abstract

The aim of the present study was to analyse the cellular mechanism underlying short-term habituation of the acoustic startle response (ASR). We explored distinct synapses of the neuronal startle pathway in rat brain slices by patch-clamp recordings of giant neurons in the caudal pontine reticular formation. Presynaptic stimulation of auditory afferents by repeated bursts at 0.1 and 1 Hz led to an exponential decay of EPSC magnitudes. This homosynaptic depression (HSD) was reversible and repeatedly inducible after recovery. Many parameters of HSD in vitro match those of ASR habituation in vivo. The mechanisms underlying HSD are distinct from classical short-term plasticity: paired-pulse as well as paired-burst stimulation revealed a facilitation of the second EPSC, occurring in a much smaller time window up to interstimulus intervals of 200 ms. Pharmacological experiments demonstrated that HSD could be completely blocked by the group II and III metabotropic glutamate receptor antagonist MPPG. Similar results were obtained by CPPG, another group II and III antagonist. In contrast, HSD was not affected by the group I and II antagonist MCPG. We conclude that we found a form of synaptic depression in synapses within the primary startle pathway which correlates in many respects with short-term habituation of the ASR and which is presumably mediated by group III metabotropic glutamate receptors.

摘要

本研究的目的是分析听觉惊跳反应(ASR)短期习惯化背后的细胞机制。我们通过对大鼠脑片尾侧脑桥网状结构中的巨神经元进行膜片钳记录,探索了神经元惊跳通路的不同突触。以0.1和1 Hz的频率重复爆发对听觉传入神经进行突触前刺激,导致兴奋性突触后电流(EPSC)幅度呈指数衰减。这种同突触抑制(HSD)是可逆的,恢复后可反复诱导。体外HSD的许多参数与体内ASR习惯化的参数相匹配。HSD的机制不同于经典的短期可塑性:双脉冲以及双爆发刺激显示第二个EPSC出现易化,其发生在一个小得多的时间窗口内,刺激间隔可达200 ms。药理学实验表明,II组和III组代谢型谷氨酸受体拮抗剂MPPG可完全阻断HSD。另一种II组和III组拮抗剂CPPG也得到了类似的结果。相比之下,HSD不受I组和II组拮抗剂MCPG的影响。我们得出结论,我们在初级惊跳通路的突触中发现了一种突触抑制形式,它在许多方面与ASR的短期习惯化相关,并且可能由III组代谢型谷氨酸受体介导。

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