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γ-氨基丁酸能和甘氨酸能抑制在髭蝠外侧丘系背核双耳加工中的作用

The roles of GABAergic and glycinergic inhibition on binaural processing in the dorsal nucleus of the lateral lemniscus of the mustache bat.

作者信息

Yang L, Pollak G D

机构信息

Department of Zoology, University of Texas at Austin 78712.

出版信息

J Neurophysiol. 1994 Jun;71(6):1999-2013. doi: 10.1152/jn.1994.71.6.1999.

Abstract
  1. We studied the monaural and binaural response properties of 99 neurons in the dorsal nucleus of the lateral lemniscus (DNLL) of the mustache bat before and during the iontophoretic application of antagonists that blocked gamma-aminobutyric acid-A (GABAA) receptors (bicuculline) or glycine receptors (strychnine). All cells were driven by monaural stimulation of the contralateral ear, whereas monaural stimulation of the ipsilateral ear never evoked discharges. The binaural properties of 81 neurons were determined by holding the intensity constant at the contralateral ear and presenting a variety of intensities to the ipsilateral ear. This procedure generated interaural intensity disparity (IID) functions and allowed us to determine the effect of ipsilaterally evoked inhibition on a constant excitatory drive evoked by the contralateral ear. 2. One of the main findings is that the IID functions in the majority of DNLL neurons were not affected by application of either strychnine or bicuculline. Blocking glycinergic inhibition with strychnine had no effect on the IID functions in 75% of the cells studied. However, strychnine did change the IID functions in approximately 25% of the DNLL population. In those cells glycinergic inhibition appeared to be partially, or, in a few cases, entirely responsible for the ipsilaterally evoked spike suppression. In contrast, blocking GABAergic inhibition with bicuculline had no discernible effect on the ipsilaterally evoked spike suppression in any of the excitatory/inhibitory cells that we recorded. GABAergic inhibition, therefore, plays no role in the formation of IID functions of neurons in the DNLL. Furthermore, the results suggest that glycinergic inhibition also does not contribute to the suppression of spikes evoked by stimulation of the contralateral ear in the vast majority of DNLL neurons. 3. Although the majority of IID functions were not influenced when either GABAergic or glycinergic innervation was blocked, ipsilateral stimulation alone evoked both a glycinergic and GABAergic inhibition in most DNLL cells. These inhibitory events were demonstrated in 18 other cells by evoking discharges with the iontophoretic application of glutamate. Stimulating the ipsilateral ear alone under these conditions caused a suppression of the glutamate-evoked discharges. Furthermore, the spike suppression persisted for a period of time that was longer than the duration of the tone burst at the ipsilateral ear. 4. The application of bicuculline or strychnine had different effects on the glutamate-elicited spikes. Bicuculline reduced the duration of the inhibition, and it was always the latter portion of the inhibition that was abolished by bicuculline. In more than half of the cells studied strychnine also reduced the duration of the inhibition.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了在离子导入拮抗剂阻断γ-氨基丁酸-A(GABAA)受体(荷包牡丹碱)或甘氨酸受体(士的宁)之前和期间,长吻蝠外侧丘系背核(DNLL)中99个神经元的单耳和双耳反应特性。所有细胞均由对侧耳的单耳刺激驱动,而同侧耳的单耳刺激从未诱发放电。通过保持对侧耳的强度恒定,并向同侧耳呈现各种强度来确定81个神经元的双耳特性。该过程产生了双耳强度差异(IID)函数,并使我们能够确定同侧诱发的抑制对由对侧耳诱发的恒定兴奋性驱动的影响。2. 主要发现之一是,大多数DNLL神经元的IID函数不受士的宁或荷包牡丹碱应用的影响。用士的宁阻断甘氨酸能抑制对75%的研究细胞的IID函数没有影响。然而,士的宁确实改变了大约25%的DNLL群体的IID函数。在这些细胞中,甘氨酸能抑制似乎部分或在少数情况下完全导致同侧诱发的锋电位抑制。相比之下,用荷包牡丹碱阻断GABA能抑制对我们记录的任何兴奋性/抑制性细胞中的同侧诱发的锋电位抑制没有明显影响。因此,GABA能抑制在DNLL神经元IID函数的形成中不起作用。此外,结果表明,在绝大多数DNLL神经元中,甘氨酸能抑制也无助于抑制对侧耳刺激诱发的锋电位。3. 尽管当GABA能或甘氨酸能神经支配被阻断时,大多数IID函数不受影响,但仅同侧刺激在大多数DNLL细胞中诱发了甘氨酸能和GABA能抑制。在另外18个细胞中,通过离子导入谷氨酸诱发放电证明了这些抑制事件。在这些条件下,仅刺激同侧耳会导致谷氨酸诱发的放电受到抑制。此外,锋电位抑制持续的时间比对侧耳的音爆持续时间更长。4. 荷包牡丹碱或士的宁的应用对谷氨酸诱发的锋电位有不同的影响。荷包牡丹碱缩短了抑制的持续时间,并且总是抑制的后一部分被荷包牡丹碱消除。在超过一半的研究细胞中,士的宁也缩短了抑制的持续时间。(摘要截断于400字)

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