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Prejunctional muscarinic inhibitory control of acetylcholine release in the human isolated detrusor: involvement of the M4 receptor subtype

机译:分离毒蕈碱对人孤立逼尿肌中乙酰胆碱释放的抑制作用:M4受体亚型的参与

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摘要

class="enumerated" style="list-style-type:decimal">Experiments were carried out in human detrusor strips to characterize muscarinic receptor subtypes involved in the prejunctional regulation of acetylcholine (ACh) release from cholinergic nerve terminals, and in the postjunctional smooth muscle contractile response.In detrusor strips preincubated with [3H]-choline, electrical field stimulation (600 pulses) delivered in six trains at 10 Hz produced a tritium outflow and a contractile response. In the presence of 10 μM paraoxon (to prevent ACh degradation) the tritium outflow was characterized by HPLC analysis as [3H]-ACh (76%) and [3H]-choline (24%).Electrically-evoked [3H]-ACh release was abolished by tetrodotoxin (TTX: 300 nM) and unaffected by hexamethonium (10 μM), indicating a postganglionic event. It was reduced by physostigmine (100 nM) and the muscarinic receptor agonist, muscarone (10 nM–1 μM), and enhanced by atropine (0.1–100 nM). These findings indicate the presence of a muscarinic negative feedback mechanism controlling ACh release.The effects of various subtype-preferring muscarinic receptor antagonists were evaluated on [3H]-ACh release and muscle contraction. The rank potency (−log EC50) orders at pre- and postjunctional level were: atropine ⩾4-diphenyl-acetoxy-N-piperidine (4-DAMP)>mamba toxin 3 (MT-3)>tripitramine>para-fluorohexahydrosiladiphenidol (pF-HHSiD)⩾methoctramine⩾pirenzepine>tripinamide, and atropine⩾4-DAMP>pF-HHSiD>>pirenzepine=tripitramine>tripinamide>methoctramine>>MT-3, respectively.The comparison of pre- and post-junctional potencies and the relationship analysis with the affinity constants at human cloned muscarinic receptor subtypes indicates that the muscarinic autoreceptor inhibiting ACh release in human detrusor is an M4 receptor, while the receptor involved in muscular contraction belongs to the M3 subtype..
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在人体逼尿肌条中进行实验,以表征参与胆碱能神经末梢乙酰胆碱(ACh)释放的结前调节和结后平滑肌收缩反应的毒蕈碱受体亚型。 在与[ 3 H]-胆碱在6列以10 Hz的频率传递的电场刺激(600脉冲)产生a流出和收缩反应。在10μm对氧磷(防止ACh降解)存在下,by的流出量通过HPLC分析表征为[ 3 H] -ACh(76%)和[ 3 H ]-胆碱(24%)。 电诱发的[ 3 H] -ACh释放被河豚毒素(TTX:300 nM)消除,而不受六甲铵(10μM)的影响,表示神经节后事件。毒扁豆碱(100 nM)和毒蕈碱受体激动剂毒蕈酮(10scarnM-1μM)可降低其剂量,而阿托品(0.1-100 nM)则可增强该剂量。这些结果表明存在控制ACh释放的毒蕈碱负反馈机制。 评估了各种亚型毒蕈碱受体拮抗剂对[ 3 H] -ACh释放和抑制作用的影响。肌肉收缩。在连接前和连接后的水平效价(-log EC50)顺序为:阿托品⩾4-二苯基-乙酰氧基-N-哌啶(4-DAMP)>曼巴毒素3(MT-3)>雷公藤>对氟六氢硅二苯二酚(pF -HHSiD)⩾甲辛三嗪⩾哌仑西平>三甲酰胺,和阿托品⩾4-DAMP> pF-HHSiD 吡仑西==三it胺>三甲酰胺>甲辛三 MT-3。结后的效价以及与人类克隆的毒蕈碱受体亚型亲和常数的关系分析表明,抑制人逼尿肌中乙酰胆碱释放的毒蕈碱自体受体是M4受体,而参与肌肉收缩的受体属于M3亚型。 li>

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