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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >EPC syntheses and structure-activity relationships of hypoglycaemic semicyclic amidines.
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EPC syntheses and structure-activity relationships of hypoglycaemic semicyclic amidines.

机译:低血糖半环am的EPC合成及其构效关系。

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A series of homochiral sterically hindered mono- and bicyclic amidines was prepared as hypoglycaemic agents by lethargic reaction of O-methylcaprolactim and 3-ethoxy-2-azabicyclo[2.2.2]oct-2-ene, respectively, with homochiral cis-2-substituted cyclopentane amines provided by asymmetrical reductive amination of racemic 2-substituted cyclopentanones. All compounds, except the cyclohexylmethyl-isoquinuclidone derivative which inhibited secretion at 100 microM, significantly stimulated insulin secretion 2-8-fold at 10 microM and 100 microM in INS-1 cells. The most potent activator was the 2-cyclopentyl-substituted caprolactam derivative 5e. The stimulatory effects on secretion increased with rising steric hindrance of both the amidine alpha-carbon and the bicyclic amidine moiety itself. Enantiomeric discrimination was observed for the 2-(cis-2-bulkysubstituted cyclopentyl)iminohexahydroazepine halides 5e and 5f and for the 3-(cis-2-substituted cyclopentyl)imino-2-azabicyclo2.2.2octane halides 6a and 6c. The amidines depolarized INS-1 cells and generated action potentials, accompanied by a decrease of membrane conductance. Simultaneously [Ca(2+)](i) increased, probably due to Ca(2+)-entry through voltage-dependent Ca(2+)-channels. At high concentrations, where inhibition of secretion was observed, Ca(2+)(i) still rose upon application of the amidines, indicating an additional inhibitory pathway downstream to the elevation of Ca(2+)(i). Even at high concentrations (100 microM), the amidines had no toxic effects on insulin secreting INS-1 cells.
机译:通过O-甲基己内酰胺和3-乙氧基-2-氮杂双环[2.2.2] oct-2-ene与同手性顺式-2-的嗜热反应,制备了一系列的高手性位阻单环和双环am作为降血糖药。外消旋的2-取代的环戊烷酮的不对称还原胺化提供的取代的环戊烷胺。除了在100 microM抑制分泌的环己基甲基-异奎宁酮衍生物外,所有化合物均在INS-1细胞中以10 microM和100 microM刺激胰岛素分泌2-8倍。最有效的活化剂是2-环戊基取代的己内酰胺衍生物5e。随着secretα-碳和双环am部分本身的空间位阻的增加,对分泌的刺激作用也增加。观察到2-(顺式-2-烷基取代的环戊基)亚氨基六氢pine庚因卤化物5e和5f和3-(顺式-2-取代的环戊基)亚氨基-2-氮杂双环2.2.2辛烷卤化物6a和6c的对映体鉴别。 idine使INS-1细胞去极化并产生动作电位,并伴随着膜电导的降低。同时[Ca(2 +)](i)增加,可能是由于通过电压依赖性Ca(2+)通道进入Ca(2+)。在高浓度下,观察到分泌的抑制作用,Ca施用后Ca(2 +)(i)仍上升,表明向Ca(2 +)(i)升高的下游有一条额外的抑制途径。即使在高浓度(100 microM)下,the对分泌胰岛素的INS-1细胞也没有毒性作用。

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