Singh Sunil K, Saibaba V, Ravikumar V, Rudrawar Santosh V, Daga Pankaj, Rao C Seshagiri, Akhila V, Hegde P, Rao Y Koteswar
Discovery Chemistry, Bollaram Road, Miyapur, Hyderabad 500 049, India.
Bioorg Med Chem. 2004 Apr 15;12(8):1881-93. doi: 10.1016/j.bmc.2004.01.033.
Several 2,3-diaryl pyrazines and quinoxalines with 4-sulfamoyl (SO(2)NH(2))/methylsulfonyl (SO(2)Me)-phenyl pharmacophores have been synthesized and evaluated for the cyclooxygenase (COX-1/COX-2) inhibitory activity. Smaller groups such as methoxy, methyl and fluoro when substituted at/around position-4 of the adjacent phenyl ring, have great impact on the selective COX-2 inhibitory activity of the series. Many potential compounds were obtained from a brief structure-activity relationship (SAR) study. Two of these, compounds 11 and 25 exhibited excellent in vivo activity in the established animal model of inflammation. Since compound 25 possessed an amenable sulfonamide group, two of its prodrugs 48 and 49 were also synthesized. Both of them have excellent in vivo potential, and represent a new class of COX-2 inhibitor.
已经合成了几种带有4-氨磺酰基(SO(2)NH(2))/甲基磺酰基(SO(2)Me)-苯基药效基团的2,3-二芳基吡嗪和喹喔啉,并对其环氧化酶(COX-1/COX-2)抑制活性进行了评估。当在相邻苯环的4位/4位周围取代较小的基团如甲氧基、甲基和氟时,对该系列化合物的选择性COX-2抑制活性有很大影响。通过简要的构效关系(SAR)研究获得了许多潜在化合物。其中两种化合物11和25在已建立的炎症动物模型中表现出优异的体内活性。由于化合物25具有合适的磺酰胺基团,还合成了它的两种前药48和49。它们两者都具有优异的体内潜力,代表了一类新型的COX-2抑制剂。