Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta, Canada T6G 2N8.
Bioorg Med Chem Lett. 2010 Apr 1;20(7):2168-73. doi: 10.1016/j.bmcl.2010.02.040. Epub 2010 Feb 13.
A new group of acetic acid (7a-c, R(1) = H), and propionic acid (7d-f, R(1) = Me), regioisomers wherein a N-difluoromethyl-1,2-dihydropyrid-2-one moiety is attached via its C-3, C-4, and C-5 position was synthesized. This group of compounds exhibited a more potent inhibition, and hence selectivity, for the cyclooxygenase-2 (COX-2) relative to the COX-1 isozyme. Attachment of the N-difluoromethyl-1,2-dihydropyrid-2-one ring system to an acetic acid, or propionic acid, moiety confers potent 5-LOX inhibitory activity, that is, absent in traditional arylacetic acid NSAIDs. 2-(1-Difluoromethyl-2-oxo-1,2-dihydropyridin-5-yl)acetic acid (7c) exhibited the best combination of dual COX-2 and 5-LOX inhibitory activities. Molecular modeling (docking) studies showed that the highly electronegative CHF(2) substituent present in 7c, that showed a modest selectivity for the COX-2 isozyme, is oriented within the secondary pocket (Val523) present in COX-2 similar to the sulfonamide (SO(2)NH(2)) COX-2 pharmacophore present in celecoxib, and that the N-difluoromethyl-1,2-dihydropyrid-2-one pharmacophore is oriented close to the region containing the LOX enzyme catalytic iron (His361, His366, and His545). Accordingly, the N-difluoromethyl-1,2-dihyrdopyrid-2-one moiety possesses properties suitable for the design of dual COX-2/5-LOX inhibitory drugs.
一组新的乙酸(7a-c,R(1) = H)和丙酸(7d-f,R(1) = Me)的区域异构体,其中一个 N-二氟甲基-1,2-二氢吡啶-2-酮部分通过其 C-3、C-4 和 C-5 位置连接。这组化合物对环氧化酶-2(COX-2)的抑制作用更强,因此对 COX-1 同工酶具有更高的选择性。将 N-二氟甲基-1,2-二氢吡啶-2-酮环系统连接到乙酸或丙酸部分上,赋予了强烈的 5-脂氧合酶抑制活性,这在传统的芳基乙酸 NSAIDs 中是不存在的。2-(1-二氟甲基-2-氧代-1,2-二氢吡啶-5-基)乙酸(7c)表现出双重 COX-2 和 5-LOX 抑制活性的最佳组合。分子建模(对接)研究表明,在 7c 中存在的高度带负电荷的 CHF(2)取代基,对 COX-2 同工酶表现出适度的选择性,它位于 COX-2 中的次要口袋(Val523)内,类似于塞来昔布中的磺酰胺(SO(2)NH(2))COX-2 药效团,并且 N-二氟甲基-1,2-二氢吡啶-2-酮药效团位于靠近含有 LOX 酶催化铁(His361、His366 和 His545)的区域。因此,N-二氟甲基-1,2-二氢吡啶-2-酮部分具有适合设计双重 COX-2/5-LOX 抑制药物的特性。