Use of imidazo[1,5-a]quinoline scaffold as the pharmacophore in the design of bivalent ligands of central benzodiazepine receptors

IF 3.3 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioorganic & Medicinal Chemistry Pub Date : 2024-11-14 DOI:10.1016/j.bmc.2024.118006
Marco Paolino , Mario Saletti , Jacopo Venditti , Federica Castriconi , Germano Giuliani , Samuele Maramai , Alessandra Toti , Carla Ghelardini , Rosanna Matucci , Narcy Alcazar Villalobos , Maurizio Anzini , Andrea Cappelli
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Abstract

The imidazo[1,5-a]quinoline scaffold of central benzodiazepine receptor (CBR) ligands was used as the pharmacophore in the design of bivalent ligands bearing spacers showing variable length and different physicochemical features. The newly designed compounds were synthesized along with the corresponding reference monovalent compounds bearing the corresponding spacers terminated with a tert-butoxycarbonyl group. The novel compounds were tested in binding assays with different CBR preparations such as the cerebral cortex from male CD-1 albino mice or the human recombinant α1β3γ2 and α2β3γ2 γ-aminobutyric acid type A receptors (GABAARs) stably expressed in mouse L(tk-) cells. The tested compounds showed IC50 values from the sub-micromolar up to the nanomolar range with very similar inhibition constants values for the two isoforms of GABAARs. The similarity in the affinity between the bivalent ligands and the corresponding monovalent ones appeared to rule out any bivalent interactions of these ligands with the two isoforms of GABAARs. Similarly, both series were able to inhibit the binding of radiolabeled flumazenil to GABAARs in cortical membranes of albino CD-1 mice, but most of the tested compounds showed biphasic inhibition curves, suggesting the existence of two well-distinct populations of binding sites. Finally, some CBR ligands selected from the bivalent ligands (i.e. 6a,c) and from the reference monovalent ligands (i.e. 7a) were then tested in vivo for their potential pharmacological effects, evaluating four classical benzodiazepine actions such as anticonvulsant, anxiolytic, locomotor, and anti-amnesic activities. All the tested compounds showed anticonvulsant and anxiolytic properties with neither muscle relaxant effect nor learning and memory impairments.

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利用咪唑并[1,5-a]喹啉支架作为药源设计苯并二氮杂卓中枢受体的二价配体。
在设计带有可变长度和不同理化特征的间隔物的二价配体时,采用了苯并二氮杂卓中枢受体(CBR)配体的咪唑并[1,5-a]喹啉支架作为药源。在合成新设计的化合物的同时,还合成了带有以叔丁氧羰基终止的相应间隔物的相应参考单价化合物。新化合物与不同的 CBR 制剂(如雄性 CD-1 白化小鼠的大脑皮层或在小鼠 L(tk-)细胞中稳定表达的人重组 α1β3γ2 和 α2β3γ2 γ-氨基丁酸 A 型受体(GABAARs))进行了结合试验。受试化合物的 IC50 值从亚微摩尔到纳摩尔范围不等,对两种 GABAAR 异构体的抑制常数值非常相似。二价配体与相应的一价配体之间亲和力的相似性似乎排除了这些配体与 GABAARs 的两种异构体之间存在任何二价相互作用的可能性。同样,这两个系列的化合物都能抑制白化 CD-1 小鼠皮质膜中放射性标记的氟马西尼与 GABAARs 的结合,但大多数受试化合物都显示出双相抑制曲线,这表明存在两个完全不同的结合位点群。最后,从二价配体(即 6a、c)和参考单价配体(即 7a)中挑选出一些 CBR 配体,对其潜在的药理作用进行了体内测试,评估了四种经典的苯并二氮杂卓作用,如抗惊厥、抗焦虑、运动和抗失眠活性。所有受测化合物都具有抗惊厥和抗焦虑特性,但既没有肌肉松弛作用,也没有学习和记忆障碍。
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来源期刊
Bioorganic & Medicinal Chemistry
Bioorganic & Medicinal Chemistry 医学-生化与分子生物学
CiteScore
6.80
自引率
2.90%
发文量
413
审稿时长
17 days
期刊介绍: Bioorganic & Medicinal Chemistry provides an international forum for the publication of full original research papers and critical reviews on molecular interactions in key biological targets such as receptors, channels, enzymes, nucleotides, lipids and saccharides. The aim of the journal is to promote a better understanding at the molecular level of life processes, and living organisms, as well as the interaction of these with chemical agents. A special feature will be that colour illustrations will be reproduced at no charge to the author, provided that the Editor agrees that colour is essential to the information content of the illustration in question.
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