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新型西拉唑啉衍生物与人脑咪唑啉受体的结合

Binding of new cirazoline derivative to imidazoline receptors from human brain.

作者信息

Dontenwill M, Ehrhardt J D, Senecheau P, Molines A, Greney H, Bousquet P

机构信息

Laboratoire de pharmacologie cardiovasculaire et rénale, CNRS ERS109, Université Louis Pasteur, Faculté de médecine, Strasbourg, France.

出版信息

Neurochem Int. 1997 Jan;30(1):9-16. doi: 10.1016/s0197-0186(96)00034-4.

Abstract

Imidazoline compounds are known to interact with alpha 2-adrenoceptors as well as with specific non-adrenergic binding sites. Such binding sites are present in the brain and in peripheral tissues. Hypotensive effects of imidazolines were shown to be related to specific interaction with imidazoline binding sites within the brainstem. Heterogeneity of these sites based on differences in selectivities was reported. In order to facilitate the characterization of human brain imidazoline receptors, we synthetized new ligands by substitutions on the cirazoline phenyl ring. Affinities of these cirazoline derivatives were determined in two imidazoline binding site models, namely the human brain and the rabbit kidney. Interaction of these compounds with imidazoline binding sites from the human brain appeared more sensitive to structural variations of the imidazoline than those with rabbit kidney sites. Moreover, no correlation was found between affinities for imidazoline binding sites and those for alpha 2-adrenoceptors of the rat brain. Arylazide derivative of 2-(5-amino-2-methyl-phenoxymethyl)-imidazoline exhibited a higher affinity for human brain imidazoline binding sites than for human brain alpha 2-adrenoceptors. Photoincorporation of this azido-compound in human brain imidazoline binding sites was achieved and blockade of [3H]idazoxan imidazoline specific binding observed. These new tools may allow fine characterization of the different subtypes of imidazoline binding proteins.

摘要

已知咪唑啉化合物可与α2-肾上腺素能受体以及特定的非肾上腺素能结合位点相互作用。此类结合位点存在于大脑和外周组织中。咪唑啉的降压作用被证明与脑干内咪唑啉结合位点的特异性相互作用有关。据报道,基于选择性差异,这些位点具有异质性。为了便于对人脑咪唑啉受体进行表征,我们通过对西拉唑啉苯环进行取代合成了新的配体。在两个人脑咪唑啉结合位点模型,即人脑和兔肾中,测定了这些西拉唑啉衍生物的亲和力。这些化合物与人脑咪唑啉结合位点的相互作用似乎比与兔肾位点的相互作用对咪唑啉结构变化更敏感。此外,在咪唑啉结合位点的亲和力与大鼠脑α2-肾上腺素能受体的亲和力之间未发现相关性。2-(5-氨基-2-甲基-苯氧基甲基)-咪唑啉的芳基叠氮衍生物对人脑咪唑啉结合位点的亲和力高于对人脑α2-肾上腺素能受体的亲和力。实现了该叠氮化合物在人脑咪唑啉结合位点的光掺入,并观察到对[3H]伊达唑胺咪唑啉特异性结合的阻断。这些新工具可能有助于对咪唑啉结合蛋白的不同亚型进行精细表征。

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