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促甲状腺激素释放激素对体外培养的大鼠舌下运动神经元兴奋作用的潜在机制。

Mechanisms underlying excitatory effects of thyrotropin-releasing hormone on rat hypoglossal motoneurons in vitro.

作者信息

Bayliss D A, Viana F, Berger A J

机构信息

Department of Physiology and Biophysics, University of Washington School of Medicine, Seattle 98195.

出版信息

J Neurophysiol. 1992 Nov;68(5):1733-45. doi: 10.1152/jn.1992.68.5.1733.

Abstract
  1. The hypoglossal motor nucleus contains binding sites for the neuropeptide thyrotropin-releasing hormone (TRH) and is innervated by TRH-containing fibers. Although excitatory effects of TRH on hypoglossal motoneurons (HMs) have been described, the ionic mechanisms by which TRH exerts such effects have not been fully elucidated. Therefore, we investigated the effects of TRH on HMs in transverse slices of rat brainstem with intracellular recording techniques. 2. TRH was applied by perfusion (0.1-10 microM) or by pressure ejection (1.0 microM), while HMs were recorded in current or voltage clamp. In all cells tested, TRH caused a depolarization and/or the development of an inward current. These effects were fully reversible, dose dependent, and showed only modest desensitization with long applications. In addition, although TRH increased synaptic activity in many cells, the depolarizing response to TRH was maintained in tetrodotoxin (0.5-1.0 microM)-containing or in a nominally Ca(2+)-free perfusate containing 2 mM Mn2+. Thus TRH acts directly on HMs to cause the depolarization. 3. Hyperpolarizing current (or voltage) steps superimposed on the TRH-induced depolarization (or inward current) revealed a decreased input conductance. Extrapolated instantaneous current-voltage relationships obtained before and at the peak of the response to TRH intersected (i.e., reversed) at -101 mV, negative to the expected K+ equilibrium potential (EK). When extracellular [K+] was raised from 3 to 12 mM, the reversal potential was shifted in the depolarizing direction and the magnitude of the TRH-induced depolarization was diminished. Moreover, the TRH response was enhanced in size from depolarized potentials (i.e., further from EK). Taken together, these results indicate that TRH depolarizes HMs, in part, by decreasing a resting K+ conductance. 4. Similar to TRH, bath-application of 2 mM Ba2+ caused a depolarization associated with decreased conductance, suggesting that Ba2+ also blocks a resting K+ conductance. The Ba(2+)-sensitive and TRH-sensitive resting K+ conductances are apparently identical; in the presence of Ba2+, the customary TRH-induced decrease in conductance was occluded. 5. It is noteworthy that the TRH-induced inward current (ITRH), although diminished, was not entirely blocked by Ba2+. This second Ba(2+)-insensitive component of ITRH was not associated with a measurable change in input conductance. It was especially evident during current-clamp recordings, when the diminutive TRH-induced current was still capable of causing a substantial depolarization. The ionic basis of the residual TRH-induced inward current remains to be determined. 6. We investigated the functional consequences of these mechanisms of action of TRH on spike firing behavior of HMs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 舌下运动核含有神经肽促甲状腺激素释放激素(TRH)的结合位点,并由含TRH的纤维支配。尽管已经描述了TRH对舌下运动神经元(HMs)的兴奋作用,但TRH发挥这种作用的离子机制尚未完全阐明。因此,我们用细胞内记录技术研究了TRH对大鼠脑干横切片中HMs的影响。2. 通过灌注(0.1 - 10微摩尔)或压力喷射(1.0微摩尔)施加TRH,同时在电流钳或电压钳下记录HMs。在所有测试的细胞中,TRH引起去极化和/或内向电流的产生。这些效应是完全可逆的、剂量依赖性的,并且在长时间应用时仅表现出适度的脱敏。此外,尽管TRH增加了许多细胞中的突触活动,但在含有河豚毒素(0.5 - 1.0微摩尔)或含有2毫摩尔锰离子的无钙灌注液中,对TRH的去极化反应仍然存在。因此,TRH直接作用于HMs导致去极化。3. 叠加在TRH诱导的去极化(或内向电流)上的超极化电流(或电压)阶跃显示输入电导降低。在对TRH反应的峰值之前和峰值时获得的外推瞬时电流 - 电压关系在 - 101毫伏处相交(即反转),该值比预期的钾离子平衡电位(EK)更负。当细胞外[K + ]从3毫摩尔升高到12毫摩尔时,反转电位向去极化方向移动,并且TRH诱导的去极化幅度减小。此外,从去极化电位(即离EK更远)时TRH反应的大小增强。综上所述,这些结果表明TRH使HMs去极化,部分是通过降低静息钾离子电导。4. 与TRH类似,浴加2毫摩尔钡离子引起与电导降低相关的去极化,表明钡离子也阻断静息钾离子电导。钡离子敏感和TRH敏感的静息钾离子电导显然相同;在存在钡离子的情况下,通常由TRH诱导的电导降低被阻断。5. 值得注意的是,TRH诱导的内向电流(ITRH)虽然减小,但并未被钡离子完全阻断。ITRH的第二个对钡离子不敏感的成分与输入电导的可测量变化无关。在电流钳记录期间尤其明显,此时微小的TRH诱导电流仍能够引起大量去极化。残留的TRH诱导内向电流的离子基础仍有待确定。6. 我们研究了TRH这些作用机制对HMs动作电位发放行为的功能后果。(摘要截断于400字)

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