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Selective inactivation of muscarinic M2 and M3 receptors in guinea-pig ileum and atria in vitro.

机译:体外豚鼠回肠和心房中毒蕈碱M2和M3受体的选择性失活。

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摘要

1. The role of muscarinic M2 and M3 receptors in ileal smooth muscle has been evaluated by use of selective receptor alkylation. The alkylating agents, 4-diphenylacetoxy-N-(2-chloroethyl)-piperidine (4-DAMP mustard) was studied for effects against (+)-cis-dioxolane, at muscarinic M2 and M3 receptors in guinea-pig atria or ileum, respectively. 4-DAMP mustard (10 nM, 40 min exposure) did not discriminate between these muscarinic receptors. In ileum, 4-DAMP mustard, at 100 nM, resulted in a large dextral shift (197 fold) and depression in maxima. In atria there was a smaller dextral shift (14 fold) but no depression in maxima. 2. The muscarinic antagonists, atropine (non-selective), methoctramine (M2-selective) and para-fluorohexahydro-siladiphenidol (pFHHSiD; M3 selective) were studied in protection studies against alkylation by phenoxybenzamine. Washout studies following equilibration of the tissues with atropine (30 nM), methoctramine (0.3 microM) or pFHHSiD (3 microM), showed the compounds to be reversible. No temporal changes in sensitivity to (+)-cis-dioxolane were observed. 3. Exposure, for 20 min, of atria and ileum to phenoxybenzamine (3 and 10 microM respectively) caused dextral shifts and depressions in the maxima of the concentration-response curve to (+)-cis-dioxolane. These effects were inhibited by prior equilibration with atropine (30 nM) and methoctramine (0.1 microM) in atria or atropine (30 nM) and pFHHSiD (3 microM) in ileum. Similar results in ileum were obtained when pilocarpine was used as the agonist. 4. These data were consistent with muscarinic M2 receptors mediating responses in atria and M3 receptors mediating responses in ileum.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:1.已通过使用选择性受体烷基化评估了毒蕈碱M2和M3受体在回肠平滑肌中的作用。研究了烷基化剂4-二苯基乙酰氧基-N-(2-氯乙基)-哌啶(4-DAMP芥末)在豚鼠心房或回肠的毒蕈碱M2和M3受体上对(+)-顺-二氧戊环的影响,分别。 4-DAMP芥末酱(10 nM,暴露40分钟)不能区分这些毒蕈碱受体。在回肠中,100 nM的4-DAMP芥末导致较大的右旋移位(197倍)和最大值降低。在心房中,右旋移位较小(14倍),但最大值没有降低。 2.在针对苯氧基苯甲胺烷基化的保护研究中,研究了毒蕈碱拮抗剂,阿托品(非选择性),甲基辛特拉明(M2选择性)和对氟六氢-硅二氮杂酚(pFHHSiD; M3选择性)。用阿托品(30 nM),甲氧明(0.3 microM)或pFHHSiD(3 microM)平衡组织后的洗脱研究表明该化合物是可逆的。没有观察到对(+)-顺-二氧戊环的敏感性随时间的变化。 3.将心房和回肠暴露于苯氧基苯甲胺(分别为3和10 microM)20分钟,导致对(+)-顺-二氧戊环的浓度-响应曲线的最大值发生右旋移位和降低。通过事先在心房中使用阿托品(30 nM)和甲辛胺(0.1 microM)或在回肠中使用阿托品(30 nM)和pFHHSiD(3 microM)来平衡这些作用。当将毛果芸香碱用作激动剂时,在回肠中得到类似的结果。 4.这些数据与毒蕈碱型M2受体介导心房反应和M3受体介导回肠反应一致(摘要截短为250字)。

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