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首页> 外文期刊>Journal of the Korean Chemical Society >Discovery of Epinastine-NSAID Hybrids as Potential Anti-inflammatory Agents: Synthesis and In Vitro Nitric Oxide Production Inhibitory Activity Study Hyeong Ryeol Woo, Kongara Damodar, Yeontaek Lee?, Soon-sung Lim?,
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Discovery of Epinastine-NSAID Hybrids as Potential Anti-inflammatory Agents: Synthesis and In Vitro Nitric Oxide Production Inhibitory Activity Study Hyeong Ryeol Woo, Kongara Damodar, Yeontaek Lee?, Soon-sung Lim?,

机译:发现Epinastine-NSAID杂种作为潜在的抗炎剂:合成和体外一氧化氮生产抑制活性研究Hyeong Ryeol Woo,Kongara Damodar,Yeontaek Lee?,很快 - Sung Lim?,

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摘要

A novel pharmacophore with epinastine (1) and NSAID moieties (2–5) was designed by molecular hybridization approach. The hybrid compounds 6–9 were synthesized by EDCI/HOBt or HATU-mediated coupling of 1 with salicylic acid (2), mefenamic acid (3), indomethacin (4) and naproxen (5), respectively, and were assessed for their inhibitory effect against NO production in LPS-induced RAW-264.7 macrophages in vitro. The Hybrids were found to exhibit significant NO production inhibitory effects with half-maximal inhibitory concentration (IC50) values ranging in between 15.96 ± 1.32 and 36.68 ± 2.53 μM and were non-cytotoxic to macrophages. Comparing the inhibition concentration (IC50), cytotoxicity concentration (CC50) and in vitro efficacy index (iEI), 6 (IC50 = 17.97 ± 1.92 μM; iEI = 11.13) and 9 (IC50 = 15.96 ± 1.32 μM; iEI = 12.53) were better suited than other hybrids as well as their parent compound. Our findings signify that hybrids 6 and 9 may serve as platforms for continued investigations for the development of more efficient anti-inflammatory agents.
机译:通过分子杂交方法设计了一种具有齿形(1)和NSAID部分(2-5)的新型药物植物。通过EDCI / HOBT或HATU介导的杂交化合物6-9与水杨酸(2),Mefenamic酸(3),吲哚美辛(4)和萘普生(5)合成1,并评估其抑制剂在体外效应LPS诱导的RAW-264.7巨噬细胞中的效果。发现杂交种表现出显着的没有生产抑制作用,其半最大抑制浓度(IC 50)值在15.96±1.32和36.68±2.53μm之间,并且是非细胞毒性的巨噬细胞。比较抑制浓度(IC 50),细胞毒性浓度(CC50)和体外疗效指数(IEI),6(IC50 = 17.97±1.92μm; IEI = 11.13)和9(IC50 = 15.96±1.32μm; IEI = 12.53)比其他混合动力车更适合以及他们的母体化合物。我们的调查结果表示混合动力车6和9可作为继续调查更有效的抗炎药物的平台。

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