Ife R J, Dyke C A, Keeling D J, Meenan E, Meeson M L, Parsons M E, Price C A, Theobald C J, Underwood A H
Smith Kline & French Research Ltd., Welwyn, Hertfordshire, England.
J Med Chem. 1989 Aug;32(8):1970-7. doi: 10.1021/jm00128a046.
The benzimidazole sulfoxide class of antisecretory H+/K+-ATPase inhibitors need to possess high stability under neutral physiological conditions yet rearrange rapidly at low pH to the active sulfenamide 2. Since the initial reaction involves internal nucleophilic attack by the pyridine nitrogen, control of the pyridine pKa is critical. In this paper we show that by utilizing the powerful electron-donating effect of a 4-amino substituent on the pyridine, moderated by the electron-withdrawing effect of a 3- or 5-halogen substituent, a combination of high potency (as inhibitors of histamine-stimulated gastric acid secretion) and good stability under physiological conditions can be obtained. Furthermore, the role of the steric interaction between the 3/5-substituents and the 4-substituent in modifying the electron-donating ability of the 4-amino group is exemplified, and additional factors affecting stability are identified. One compound, in particular, 2-[[(3-chloro-4-morpholino-2- pyridyl)methyl]sulfinyl]-5-methoxy-(1H)-benzimidazole (3a, SK&F 95601), was chosen for further development and evaluation in man.
苯并咪唑亚砜类抗分泌H⁺/K⁺-ATP酶抑制剂在中性生理条件下需具备高稳定性,但在低pH值时能迅速重排为活性亚磺酰胺2。由于初始反应涉及吡啶氮的分子内亲核进攻,控制吡啶的pKa至关重要。在本文中,我们表明通过利用吡啶上4-氨基取代基强大的给电子效应,并由3-或5-卤素取代基的吸电子效应进行调节,可以获得高效能(作为组胺刺激胃酸分泌的抑制剂)和在生理条件下良好的稳定性。此外,举例说明了3/5-取代基与4-取代基之间的空间相互作用在改变4-氨基的给电子能力中的作用,并确定了影响稳定性的其他因素。特别选择了一种化合物,即2-[[(3-氯-4-吗啉代-2-吡啶基)甲基]亚磺酰基]-5-甲氧基-(1H)-苯并咪唑(3a,SK&F 95601),用于在人体中的进一步开发和评估。