Salimi Mona, Ghahremani Mohammad Hossein, Naderi Nima, Amini Mohsen, Salimi Elika, Amanlou Massoud, Abdi Khosrou, Salehi Raha, Shafiee Abbas
Research and Development Center, Pasteur Institute of Iran, Kasas, Iran.
Acta Pharmacol Sin. 2007 Aug;28(8):1254-60. doi: 10.1111/j.1745-7254.2007.00619.x.
To design and synthesize a series of benzenesulfonamide derivatives, 4-[2-alkylthio-5(4)-(4-substitutedphenyl)imidazole-4(5)-yl]benzenesulfonamides (4a-4j), which are intended to act as cyclooxygenase-2 (COX-2) inhibitors with good COX-2 inhibitor activity, and which will exert anti-inflammatory activities in vivo.
Benzenesulfonamide derivatives were designed and synthesized through multi-step chemical reactions. All the synthesized compounds were evaluated in an in vitro assay. The active compound 4a-4f was selected for further evaluation in a carrageenan-induced rat paw edema model.
Docking studies showed that compound 4 bind into the primary binding site of COX-2 with the sulfonamide SO2NH2 moiety interacting with the secondary pocket amino acid residues. In the in vitro assay, compound 4 inhibited COX-2 with an inhibition concentration IC(50) value of 1.23-8 nmol/L, compared to celecoxib with IC(50) value of 1.5 nmol/L. Compound 4b and 4c had good potency and selectivity in comparison to the celecoxib. In the in vivo model, compound 4a-4f exhibited a moderate potency to inhibit 50% carrageenan-induced paw edema with value of 1.58-4.3 mg/kg. In the latter experiment, compound 4c was the most active compound.
The anti-inflammatory effects obtained for compound 4a-4j could be due to the presence of fluorine or hydrogen substituents in the para position of the phenyl ring of these compounds.
设计并合成一系列苯磺酰胺衍生物,即4-[2-烷硫基-5(4)-(4-取代苯基)咪唑-4(5)-基]苯磺酰胺(4a - 4j),旨在使其作为具有良好环氧化酶-2(COX-2)抑制活性的COX-2抑制剂,并在体内发挥抗炎活性。
通过多步化学反应设计并合成苯磺酰胺衍生物。所有合成的化合物均进行体外测定。选择活性化合物4a - 4f在角叉菜胶诱导的大鼠足爪水肿模型中进行进一步评估。
对接研究表明,化合物4与COX-2的主要结合位点结合,磺酰胺SO2NH2部分与二级口袋氨基酸残基相互作用。在体外测定中,化合物4抑制COX-2的抑制浓度IC(50)值为1.23 - 8 nmol/L,而塞来昔布的IC(50)值为1.5 nmol/L。与塞来昔布相比,化合物4b和4c具有良好的效价和选择性。在体内模型中,化合物4a - 4f表现出中等效价,抑制50%角叉菜胶诱导的足爪水肿,值为1.58 - 4.3 mg/kg。在后一实验中,化合物4c是最具活性的化合物。
化合物4a - 4j获得的抗炎作用可能归因于这些化合物苯环对位上存在氟或氢取代基。