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豚鼠三叉神经脊束核胶状质中蕈毒碱受体的激活

Muscarine receptor activation in the substantia gelatinosa of the spinal trigeminal nucleus of the guinea pig.

作者信息

Travagli R A

机构信息

Department of Physiology, West Virginia University School of Medicine, Morgantown, 26506-9229, USA.

出版信息

J Neurophysiol. 1996 Dec;76(6):3817-22. doi: 10.1152/jn.1996.76.6.3817.

Abstract
  1. Intracellular recordings were made from slices of guinea pig spinal trigeminal nucleus pars caudalis (SG). 2. Muscarine [0.3-30 microM; half maximally effective concentration (EC50) = 2.9 microM] hyperpolarized 61% of SG neurons. The effect was mimicked by carbachol (0.3-30 microM; EC50 = 3.9 microM) and antagonized by pirenzepine (1 microM). Thirty-four percent of the neurons were depolarized by muscarine and carbachol (1-30 microM: EC50 = 5.7 microM), and the effect was antagonized by pirenzepine (100 nM). 3. In approximately 80% of recordings, muscarine (10-30 microM) evoked repetitive spontaneous inhibitory postsynaptic potentials (IPSPs) that were sensitive to bicuculline (10 microM). 4. Muscarine (1-30 microM; EC50 = 3 microM) decreased the amplitude of the majority of evoked excitatory postsynaptic potentials (EPSPs), and the effect was mimicked by carbachol and antagonized by pirenzepine (100 nM). 5. These results indicate that there are at least three mechanisms by which muscarine inhibits SG neurons: 1) hyperpolarization through activation of non-M1 receptors; 2) activation of gamma-amino-butyric acid-containing interneurons that mediate IPSPs in a subset of neurons; and 3) a decrease in evoked EPSP amplitude. Muscarine can also activate SG neurons via interaction with an M1-type receptor.
摘要
  1. 从豚鼠三叉神经脊束核尾侧亚核(SG)切片进行细胞内记录。2. 毒蕈碱[0.3 - 30微摩尔;半数最大效应浓度(EC50)= 2.9微摩尔]使61%的SG神经元超极化。该效应被卡巴胆碱(0.3 - 30微摩尔;EC50 = 3.9微摩尔)模拟,并被哌仑西平(1微摩尔)拮抗。34%的神经元被毒蕈碱和卡巴胆碱(1 - 30微摩尔:EC50 = 5.7微摩尔)去极化,且该效应被哌仑西平(100纳摩尔)拮抗。3. 在大约80%的记录中,毒蕈碱(10 - 30微摩尔)诱发对荷包牡丹碱(10微摩尔)敏感的重复性自发性抑制性突触后电位(IPSPs)。4. 毒蕈碱(1 - 30微摩尔;EC50 = 3微摩尔)降低了大多数诱发的兴奋性突触后电位(EPSPs)的幅度,该效应被卡巴胆碱模拟并被哌仑西平(100纳摩尔)拮抗。5. 这些结果表明毒蕈碱抑制SG神经元至少有三种机制:1)通过激活非M1受体导致超极化;2)激活含γ-氨基丁酸的中间神经元,这些中间神经元在一部分神经元中介导IPSPs;3)降低诱发的EPSP幅度。毒蕈碱还可通过与M1型受体相互作用激活SG神经元。

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