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六环铵/硅-六环铵和六氢双苯丙醇/六氢硅双苯丙醇型抗毒蕈碱药物与毒蕈碱受体亚型的结合及功能特性

Binding and functional properties of antimuscarinics of the hexocyclium/sila-hexocyclium and hexahydro-diphenidol/hexahydro-sila-diphenidol type to muscarinic receptor subtypes.

作者信息

Waelbroeck M, Tastenoy M, Camus J, Christophe J, Strohmann C, Linoh H, Zilch H, Tacke R, Mutschler E, Lambrecht G

机构信息

Department of Biochemistry and Nutrition, Medical School, Université Libre de Bruxelles, Belgium.

出版信息

Br J Pharmacol. 1989 Sep;98(1):197-205. doi: 10.1111/j.1476-5381.1989.tb16882.x.

Abstract
  1. In an attempt to assess the structural requirements for the muscarinic receptor selectivity of hexahydro-diphenidol (hexahydro-difenidol) and hexahydro-sila-diphenidol (hexahydro-sila-difenidol), a series of structurally related C/Si pairs were investigated, along with atropine, pirenzepine and methoctramine, for their binding affinities in NB-OK 1 cells as well as in rat heart and pancreas. 2. The action of these antagonists at muscarinic receptors mediating negative inotropic responses in guinea-pig atria and ileal contractions has also been assessed. 3. Antagonist binding data indicated that NB-OK 1 cells (M1 type) as well as rat heart (cardiac type) and pancreas (glandular/smooth muscle type) possess different muscarinic receptor subtypes. 4. A highly significant correlation was found between the binding affinities of the antagonists to muscarinic receptors in rat heart and pancreas, respectively, and the affinities to muscarinic receptors in guinea-pig atria and ileum. This implies that the muscarinic binding sites in rat heart and the receptors in guinea-pig atria are essentially similar, but different from those in pancreas and ileum. 5. The antimuscarinic potency of hexahydro-diphenidol and hexahydro-sila-diphenidol at the three subtypes was influenced differently by structural modifications (e.g. quaternization). Different selectivity profiles for the antagonists were obtained, which makes these compounds useful tools to investigate further muscarinic receptor heterogeneity. Indeed, the tertiary analogues hexahydro-diphenidol (HHD) and hexahydro-sila-diphenidol (HHSiD) had an M1 = glandular/smooth muscle greater than cardiac selectivity profile, whereas the quaternary analogues HHD methiodide and HHSiD methiodide were M1 preferring (M1 greater than glandular/smooth muscle, cardiac).
摘要
  1. 为了评估六氢二苯哌啶(六氢二苯芬多)和六氢硅二苯哌啶(六氢硅二苯芬多)对毒蕈碱受体选择性的结构要求,研究了一系列结构相关的碳/硅对,以及阿托品、哌仑西平和甲溴东莨菪碱,测定它们在NB-OK 1细胞、大鼠心脏和胰腺中的结合亲和力。2. 还评估了这些拮抗剂对介导豚鼠心房负性肌力反应和回肠收缩的毒蕈碱受体的作用。3. 拮抗剂结合数据表明,NB-OK 1细胞(M1型)以及大鼠心脏(心脏型)和胰腺(腺/平滑肌型)具有不同的毒蕈碱受体亚型。4. 分别在大鼠心脏和胰腺中,拮抗剂对毒蕈碱受体的结合亲和力与在豚鼠心房和回肠中对毒蕈碱受体的亲和力之间发现了高度显著的相关性。这意味着大鼠心脏中的毒蕈碱结合位点与豚鼠心房中的受体基本相似,但与胰腺和回肠中的不同。5. 六氢二苯哌啶和六氢硅二苯哌啶在三种亚型上的抗毒蕈碱效力受结构修饰(如季铵化)的影响不同。获得了拮抗剂不同的选择性谱,这使得这些化合物成为进一步研究毒蕈碱受体异质性的有用工具。实际上,叔胺类似物六氢二苯哌啶(HHD)和六氢硅二苯哌啶(HHSiD)的M1 = 腺/平滑肌选择性大于心脏选择性,而季铵类似物六氢二苯哌啶甲碘化物和六氢硅二苯哌啶甲碘化物则优先选择M1(M1大于腺/平滑肌、心脏)。

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