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阻断含有α3β2亚基的神经元易化性烟碱受体可导致大鼠离体膈肌强直后增强减弱。

Blockade of neuronal facilitatory nicotinic receptors containing alpha 3 beta 2 subunits contribute to tetanic fade in the rat isolated diaphragm.

作者信息

Faria Miguel, Oliveira Laura, Timóteo M Alexandrina, Lobo M Graça, Correia-De-Sá Paulo

机构信息

Laboratório de Farmacologia, Unidade Multidisciplinar de Investigação Biomédica, Instituto de Ciências Biomédicas de Abel Salazar, Universidade do Porto, 4099-003 Porto, Portugal.

出版信息

Synapse. 2003 Aug;49(2):77-88. doi: 10.1002/syn.10211.

Abstract

Nicotinic receptor (nAChR) subtypes involved in pre- and postjunctional actions underlying tetanic fade were studied in rat phrenic-nerve hemidiaphragms. We investigated the ability of subtype-specific nAChR antagonists to depress nerve-evoked contractions and [(3)H]-acetylcholine ([(3)H]-ACh) release. Muscle tension was transiently increased during brief high frequency trains (50 Hz for 5 sec). The rank potency order of nAChR antagonists to reduce tetanic peak tension was alpha-bungarotoxin > d-tubocurarine >> mecamylamine > hexamethonium. Reduction of maximal tetanic tension produced by dihydro-beta-erythroidine (0.03-10 microM), methyllycaconitine (0.003-3 microM), and alpha-conotoxin MII (0.001-0.3 microM) did not exceed 30%. Besides reduction of peak tension d-tubocurarine (0.1-0.7 microM), mecamylamine (0.1-300 microM), and hexamethonium (30-3,000 microM) also caused tetanic fading. With alpha-conotoxin MII (0.001-0.3 microM) and dihydro-beta-erythroidine (0.03-10 microM), tetanic fade was evident only after decreasing the safety factor of neuromuscular transmission (with high magnesium ions, 6-7 mM). The antagonist rank potency order to reduce evoked (50 Hz for 5 sec) [(3)H]-ACh release from motor nerve terminals was alpha-conotoxin MII (0.1 microM) > dihydro-beta-erythroidine (1 microM) approximately d-tubocurarine (1 microM) > mecamylamine (100 microM) > hexamethonium (1,000 microM). When applied in a concentration (0.3 microM) above that producing tetanic paralysis, alpha-bungarotoxin failed to affect [(3)H]-ACh release. Data obtained suggest that postjunctional neuromuscular relaxants interact with alpha-bungarotoxin-sensitive nicotinic receptors containing alpha1-subunits, whereas blockade of neuronal alpha3beta2-containing receptors produce tetanic fade by breaking nicotinic autofacilitation of acetylcholine release.

摘要

在大鼠膈神经半膈肌中研究了参与强直后衰减的节前和节后作用的烟碱型受体(nAChR)亚型。我们研究了亚型特异性nAChR拮抗剂抑制神经诱发收缩和[³H] - 乙酰胆碱([³H] - ACh)释放的能力。在短暂高频刺激(50Hz,持续5秒)期间,肌肉张力短暂增加。nAChR拮抗剂降低强直峰值张力的效价顺序为:α-银环蛇毒素>d - 筒箭毒碱>>美加明>六甲铵。二氢β-刺桐啶(0.03 - 10μM)、甲基lycaconitine(0.003 - 3μM)和α-芋螺毒素MII(0.001 - 0.3μM)对最大强直张力的降低不超过30%。除了降低峰值张力外,d - 筒箭毒碱(0.1 - 0.7μM)、美加明(0.1 - 300μM)和六甲铵(30 - 3000μM)也会导致强直后衰减。使用α-芋螺毒素MII(0.001 - 0.3μM)和二氢β-刺桐啶(0.03 - 10μM)时,只有在降低神经肌肉传递的安全系数(使用高镁离子,6 - 7mM)后,强直后衰减才明显。降低运动神经末梢诱发的(50Hz,持续5秒)[³H] - ACh释放的拮抗剂效价顺序为:α-芋螺毒素MII(0.1μM)>二氢β-刺桐啶(1μM)≈d - 筒箭毒碱(1μM)>美加明(100μM)>六甲铵(1000μM)。当以高于产生强直麻痹的浓度(0.3μM)应用时,α-银环蛇毒素未能影响[³H] - ACh释放。所获得的数据表明,节后神经肌肉松弛剂与含有α1亚基的α-银环蛇毒素敏感的烟碱型受体相互作用,而阻断含α3β2的神经元受体通过破坏乙酰胆碱释放的烟碱型自身易化作用产生强直后衰减。

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