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突触前组胺H1和H3受体调节豚鼠交感神经节突触传递。

Presynaptic histamine H1 and H3 receptors modulate sympathetic ganglionic synaptic transmission in the guinea-pig.

作者信息

Christian E P, Weinreich D

机构信息

Department of Pharmacology and Experimental Therapeutics, University of Maryland School of Medicine, Baltimore 21201.

出版信息

J Physiol. 1992 Nov;457:407-30. doi: 10.1113/jphysiol.1992.sp019385.

Abstract
  1. To study the effects of histamine on the efficacy of sympathetic ganglionic synaptic transmission, extracellular recordings of the postganglionic compound action potential (CAP) and intracellular recordings of excitatory postsynaptic potentials (EPSPs) elicited by preganglionic electrical stimulation were obtained from isolated guinea-pig superior cervical ganglia (SCG). 2. In different preparations, superfusion with histamine (0.1-100 microM) either potentiated or depressed the postganglionic CAP elicited by electrical stimulation of the cervical sympathetic trunk (0.2-3.0 Hz). The direction of response produced by histamine did not depend on stimulation frequency or histamine concentration; potentiation and depression both showed concentration dependence over the range of histamine concentrations tested. 3. Experiments employing a variety of histamine receptor agonists or antagonists revealed that histamine-induced potentiation of the postganglionic CAP could be attributed to histamine H1 receptor activation, and depression to H3 receptor activation. 4. Histamine similarly potentiated or depressed the intracellularly recorded EPSP. However, these opposite effects occurred at different synapses. In agreement with the studies on the postganglionic CAP, histamine H1 antagonists prevented histamine-induced potentiation of the EPSP and H3 receptor antagonists prevented histamine-induced depression. 5. Direct quantal analyses of histamine-induced synaptic potentiation and depression were implemented to determine the pre- and postsynaptic components of these effects. Quantal size was estimated by measuring the amplitude of spontaneous miniature EPSP amplitudes. Histamine-induced potentiation and depression of the evoked EPSP were found to be accompanied by increased or decreased quantal content respectively, and unchanged quantal size, providing evidence that presynaptic mechanisms were involved in mediating both effects. 6. Some guinea-pigs were actively sensitized to ovalbumin. Subsequent exposure of the isolated SCG from these animals to the sensitizing antigen produced changes in the EPSP amplitude that correlated significantly to the response produced by exogenously applied histamine at the same synapse. 7. The correspondence between the effects of specific antigen challenge and exogenous histamine on evoked EPSPs at a synapse provides evidence that endogenous histamine released during an immunological response to antigen challenge can activate histamine H1 and H3 receptors to modulate synaptic efficacy in sympathetic ganglia.
摘要
  1. 为研究组胺对交感神经节突触传递效能的影响,从离体豚鼠颈上神经节(SCG)获取了神经节后复合动作电位(CAP)的细胞外记录以及节前电刺激诱发的兴奋性突触后电位(EPSP)的细胞内记录。2. 在不同的标本中,用组胺(0.1 - 100微摩尔)灌流,可增强或抑制颈交感干电刺激(0.2 - 3.0赫兹)诱发的神经节后CAP。组胺产生的反应方向不依赖于刺激频率或组胺浓度;在测试的组胺浓度范围内,增强和抑制均表现出浓度依赖性。3. 采用多种组胺受体激动剂或拮抗剂的实验表明,组胺诱导的神经节后CAP增强可归因于组胺H1受体激活,而抑制则归因于H3受体激活。4. 组胺同样增强或抑制细胞内记录的EPSP。然而,这些相反的效应发生在不同的突触。与神经节后CAP的研究一致,组胺H1拮抗剂可阻止组胺诱导的EPSP增强,H3受体拮抗剂可阻止组胺诱导的抑制。5. 对组胺诱导的突触增强和抑制进行了直接量子分析,以确定这些效应的突触前和突触后成分。通过测量自发微小EPSP的振幅来估计量子大小。发现组胺诱导的诱发EPSP增强和抑制分别伴随着量子含量的增加或减少,而量子大小不变,这表明突触前机制参与介导了这两种效应。6. 一些豚鼠被主动致敏于卵清蛋白。随后将这些动物的离体SCG暴露于致敏抗原,会使EPSP振幅发生变化,这与在同一突触处外源性应用组胺产生的反应显著相关。7. 特异性抗原攻击和外源性组胺对突触处诱发EPSP的效应之间的对应关系表明,在对抗抗原攻击的免疫反应过程中释放的内源性组胺可激活组胺H1和H3受体,从而调节交感神经节中的突触效能。

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