Makovec F, Peris W, Frigerio S, Giovanetti R, Letari O, Mennuni L, Revel L
Rotta Research Laboratorium, Milano, Italy.
J Med Chem. 1996 Jan 5;39(1):135-42. doi: 10.1021/jm950372w.
A series of new spiroglumide amido acid derivatives was synthesized and evaluated for their ability to inhibit the binding of cholecystokinin (CCK) to guinea pig brain cortex (CCKB receptors) and peripheral rat pancreatic acini (CCKA receptors), as well as to inhibit in vitro the gastrin-induced Ca2+ increase in rabbit gastric parietal cells. Appropriate chemical manipulations of the structure of spiroglumide (CR 2194), i.e., (R)-4-(3,5-dichlorobenzamido)-5-(8-azaspiro[4.5]decan- 8-yl)-5-oxopentanoic acid, led to potent and selective antagonists of CCKB/gastrin receptors. Structure-activity relationships are discussed. Some of these new derivatives, as, for example, compound 54 (CR 2622), i.e., (S)-4-[[(R)-4'-[(3,5-dichlorobenzoyl)-amino]-5'-(8- azaspiro[4.5]decan-8-yl)-5'-oxo-pentanoyl]amino]-5- (1-naphthylamino)-5-oxopentanoic acid, exhibit activity 70-170 times greater than that of spiroglumide, depending upon the model used (IC50 = 2 x 10(-8) vs 140 x 10(-8) mol in binding inhibition of [3H]-N-Me-N-Leu-CCK-8 in guinea pig brain cortex and IC50 = 0.7 x 10(-8) vs 122.3 x 10(-8) mol in inhibition of gastrin-induced Ca2+ mobilization in parietal cells of rabbit, respectively). Computer-assisted conformational analysis studies were carried out in order to compare the chemical structure of both the agonist (pentagastrin) and the antagonist (54).
合成了一系列新的螺谷酰胺氨基酸衍生物,并评估了它们抑制胆囊收缩素(CCK)与豚鼠脑皮质(CCKB受体)及大鼠外周胰腺腺泡(CCKA受体)结合的能力,以及在体外抑制胃泌素诱导的兔胃壁细胞Ca2+升高的能力。对螺谷酰胺(CR 2194),即(R)-4-(3,5-二氯苯甲酰胺基)-5-(8-氮杂螺[4.5]癸-8-基)-5-氧代戊酸的结构进行适当化学操作,得到了强效且选择性的CCKB/胃泌素受体拮抗剂。讨论了构效关系。其中一些新衍生物,例如化合物54(CR 2622),即(S)-4-[[(R)-4'-[(3,5-二氯苯甲酰基)-氨基]-5'-(8-氮杂螺[4.5]癸-8-基)-5'-氧代-戊酰基]氨基]-5-(1-萘基氨基)-5-氧代戊酸,根据所使用的模型,其活性比螺谷酰胺高70 - 170倍(在豚鼠脑皮质中对[3H]-N-Me-N-Leu-CCK-8的结合抑制中,IC50分别为2×10(-8)和140×10(-8)mol;在兔壁细胞中抑制胃泌素诱导的Ca2+动员时,IC50分别为0.7×10(-8)和122.3×10(-8)mol)。进行了计算机辅助构象分析研究,以比较激动剂(五肽胃泌素)和拮抗剂(54)的化学结构。