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Improved synthesis of 4-/6-substituted 2-carboxy-1H- indole-3-propionic acid derivatives and structure-activity relationships as GPR17 agonists

机译:改进的4- / 6-取代的2-羧基-1H-吲哚-3-丙酸衍生物的合成及其作为GPR17激动剂的结构活性关系

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摘要

The orphan G protein-coupled receptor GPR17 was shown to be involved in myelin repair and has been proposed as a novel drug target for the treatment of brain and spinal cord injury and for multiple sclerosis. Recently, 3-(2-carboxy-4,6-dichloro-indol-3-yl)propionic acid (MDL29,951, 1a) was discovered and characterized as a potent synthetic GPR17 agonist. In the present study we substantially optimized the preparation of 1a, which is carried out via Japp-Klingemann condensation of 3,5-dichlorophenyldiazonium chloride and deprotonated 2-(ethoxycarbonyl) cyclopentanone yielding phenylhydrazone derivative 5a followed by Fischer indole (diaza-Cope) rearrangement. A robust synthesis of 1a (75% yield) was developed to allow upscaling of the procedure. The developed method was applied to the synthesis of a series of 10 derivatives, eight of which represent new compounds. Biological evaluation in calcium mobilization assays using 1321N1-astrocytoma cells recombinantly expressing the human GPR17 provided first insights into their structure-activity relationships. 3-(2Carboxy- 4,6-dibromo-indol-3-yl) propionic acid (1b) showed similar potency to 1a and represents the most potent synthetic GPR17 agonist described to date with an EC50 value of 202 mu M.
机译:已显示孤儿G蛋白偶联受体GPR17参与髓鞘修复,并已被提议作为治疗脑和脊髓损伤以及多发性硬化症的新型药物靶标。最近,发现了3-(2-羧基-4,6-二氯吲哚-3-基)丙酸(MDL29,951,1a),并将其表征为有效的合成GPR17激动剂。在本研究中,我们基本上优化了1a的制备,这是通过3,5-二氯苯基重氮氯化物和去质子化的2-(乙氧羰基)环戊酮的Japp-Klingemann缩合反应生成的苯hydr衍生物5a,然后进行Fischer吲哚(diaza-Cope)重排。开发了一种可靠的1a合成试剂(产率为75%),可以放大该程序。所开发的方法适用于一系列10种衍生物的合成,其中8种代表新化合物。使用重组表达人GPR17的1321N1-星形细胞瘤细胞进行钙动员测定的生物学评估提供了对其结构-活性关系的初步了解。 3-(2-羧基-4,6-二溴-吲哚-3-基)丙酸(1b)与1a具有相似的效能,代表了迄今为止描述的最有效的GPR17激动剂,EC50值为202μM。

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