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乙酰胆碱引起的小鼠前列腺收缩是由 M3 毒蕈碱受体介导的。

Contractions of the mouse prostate elicited by acetylcholine are mediated by M(3) muscarinic receptors.

机构信息

Medicinal Chemistry and Drug Action, Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, Victoria 3052, Australia.

出版信息

J Pharmacol Exp Ther. 2011 Dec;339(3):870-7. doi: 10.1124/jpet.111.186841. Epub 2011 Sep 1.

Abstract

Increased smooth muscle tone in the human prostate contributes to the symptoms associated with benign prostatic hyperplasia. In the mouse prostate gland, cholinergic innervation is responsible for a component of the nerve-mediated contractile response. This study investigates the muscarinic receptor subtype responsible for the cholinergic contractile response in the mouse prostate gland. To characterize the muscarinic receptor subtype, mouse prostates taken from wild-type or M(3) muscarinic receptor knockout mice were mounted in organ baths. The isometric force that tissues developed in response to electrical-field stimulation or exogenously applied cholinergic agonists in the presence or absence of a range of muscarinic receptor antagonists was evaluated. Carbachol elicited reproducible and concentration-dependent contractions of the isolated mouse prostate, which were antagonized by the presence of muscarinic receptor antagonists. Calculation of antagonist affinities (pA(2) values) indicated a rank order of antagonist potencies in the mouse prostate of: darifenacin (9.08) = atropine (9.07) = 1,1-dimethyl-4-diphenylacetoxypiperidinium iodide (9.02) > cyclohexyl-hydroxy-phenyl-(3-piperidin-1-ylpropyl)silane (7.85) > cyclohexyl-(4-fluorophenyl)-hydroxy-(3-piperidin-1-ylpropyl)silane (7.39) > himbacine (7.19) > pirenzipine (6.88) > methoctramine (6.20). Furthermore, genetic deletion of the M(3) muscarinic receptor inhibited prostatic contractions to electrical-field stimulation or exogenous administration of acetylcholine. In this study we identified that the cholinergic component of contraction in the mouse prostate is mediated by the M(3) muscarinic receptor subtype. Pharmacological antagonism of the M(3) muscarinic receptor may be a beneficial additional target for the treatment of benign prostatic hyperplasia in the human prostate gland.

摘要

人类前列腺中的平滑肌张力增加导致与良性前列腺增生相关的症状。在小鼠前列腺中,胆碱能神经支配负责神经介导的收缩反应的一部分。本研究调查了负责小鼠前列腺胆碱能收缩反应的毒蕈碱受体亚型。为了表征毒蕈碱受体亚型,从野生型或 M3 毒蕈碱受体敲除小鼠中取出的前列腺组织在器官浴中安装。评估组织对电刺激或外源性应用胆碱能激动剂的反应中产生的等长力,以及存在或不存在一系列毒蕈碱受体拮抗剂的情况下。乙酰胆碱诱发了分离的小鼠前列腺的可重复且浓度依赖性收缩,这些收缩被毒蕈碱受体拮抗剂的存在所拮抗。拮抗剂亲和力(pA2 值)的计算表明,在小鼠前列腺中的拮抗剂效力的顺序为:达非那新(9.08)=阿托品(9.07)= 1,1-二甲基-4-二苯乙酰氧基哌啶碘化物(9.02)>环己基-羟基-苯基-(3-哌啶-1-基丙基)硅烷(7.85)>环己基-(4-氟苯基)-羟基-(3-哌啶-1-基丙基)硅烷(7.39)>氢溴酸巴马汀(7.19)>哌仑西平(6.88)>甲溴东莨菪碱(6.20)。此外,M3 毒蕈碱受体的基因缺失抑制了前列腺对电刺激或外源性乙酰胆碱的收缩反应。在这项研究中,我们确定了小鼠前列腺中的胆碱能收缩成分是由 M3 毒蕈碱受体亚型介导的。M3 毒蕈碱受体的药理学拮抗可能是人类前列腺良性前列腺增生治疗的有益的附加靶点。

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