首页> 外文期刊>Journal of Medicinal Chemistry >Design and synthesis of imidazoline derivatives active on glucose homeostasis in a rat model of type II diabetes. 2. Syntheses and biological activities of 1,4-dialkyl-, 1,4-dibenzyl, and 1-benzyl-4-alkyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)piperazin
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Design and synthesis of imidazoline derivatives active on glucose homeostasis in a rat model of type II diabetes. 2. Syntheses and biological activities of 1,4-dialkyl-, 1,4-dibenzyl, and 1-benzyl-4-alkyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)piperazin

机译:在II型糖尿病大鼠模型中对葡萄糖稳态具有活性的咪唑啉衍生物的设计与合成。 2. 1,4-二烷基-,1,4-二苄基和1-苄基-4-烷基-2-(4',5'-二氢-1'H-咪唑-2'-基的合成和生物学活性哌嗪

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Piperazine derivatives have been identified as new antidiabetic compounds. Structure-activity relationship studies in a series of 1-benzyl-4-alkyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)piperazines resulted in the identification of 1-methyl-4-(2', 4'-dichlorobenzyl)-2-(4',5'-dihydro-1'H-imidazol-2'-yl)piperazine, PMS 812 (S-21663), as a highly potent antidiabetic agent on a rat model of diabetes, mediated by an important increase of insulin secretion independently of alpha2 adrenoceptor blockage. These studies were extended to find additional compounds in these series with improved properties. In such a way, substitution of both piperazine N atoms was first optimized by using various alkyl, branched or not, and benzyl groups. Second, some modifications of the imidazoline ring and its replacement by isosteric heterocycles were carried out, proceeding from PMS 812, to evaluate their influence on the antidiabetic activity. The importance of the distance between the imidazoline ring and the piperazine skeleton was studied third. Finally, the influence of the N-benzyl moiety was also analyzed compared to a direct N-phenyl substitution. The pharmacological evaluation was performed in vivo using glucose tolerance tests on a rat model of type II diabetes. The most active compounds were 1,4-diisopropyl-2-(4', 5'-dihydro-1'H-imidazol-2'-yl)piperazine (41a), PMS 847 (S-22068), and 1,4-diisobutyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)piperazine (41b), PMS 889 (S-22575), which strongly improved glucose tolerance without any side event or hypoglycemic effect. More particularly, PMS 847 proved to be as potent after po (100 &mgr;mol/kg) as after ip administration and appears as a good candidate for clinical investigations.
机译:哌嗪衍生物已被鉴定为新的抗糖尿病化合物。一系列1-苄基-4-烷基-2-(4',5'-二氢-1'H-咪唑-2'-基)哌嗪的结构活性关系研究确定了1-甲基-4 -(2',4'-二氯苄基)-2-(4',5'-二氢-1'H-咪唑-2'-基)哌嗪,PMS 812(S-21663),作为一种高效的抗糖尿病药糖尿病大鼠模型,其独立于α2肾上腺素受体阻滞由胰岛素分泌的重要增加介导。扩展了这些研究以发现这些系列中具有改进性能的其他化合物。以这种方式,首先通过使用各种烷基(支链与否)和苄基来优化两个哌嗪N原子的取代。其次,从PMS 812开始,对咪唑啉环进行了一些修饰,并用等位杂环取代了它,以评估其对降糖活性的影响。第三,研究了咪唑啉环与哌嗪骨架之间距离的重要性。最后,与直接的N-苯基取代相比,还分析了N-苄基部分的影响。使用葡萄糖耐量试验对II型糖尿病大鼠模型进行体内药理学评估。活性最高的化合物是1,4-二异丙基-2-(4',5'-二氢-1'H-咪唑-2'-基)哌嗪(41a),PMS 847(S-22068)和1,4 -二异丁基-2-(4',5'-二氢-1'H-咪唑-2'-基)哌嗪(41b),PMS 889(S-22575),可显着提高葡萄糖耐量,而无任何副作用或降血糖作用。更具体地,PMS 847被证明在口服(100μg/ mol / kg)后与腹膜内给药一样有效,并且似乎是临床研究的良好候选者。

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