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新型含唑基大黄素衍生物的合成及抗炎作用。

Synthesis and anti-inflammatory effects of novel emodin derivatives bearing azole moieties.

机构信息

Key Laboratory of Luminescence and Real-Time Analytical Chemistry (Southwest University), Ministry of Education, College of Pharmaceutical Sciences, Southwest University, Chongqing, China.

Research and Development Center, Chongqing Huapont Pharmaceutical Co. Ltd., Chongqing, China.

出版信息

Arch Pharm (Weinheim). 2020 Feb;353(2):e1900264. doi: 10.1002/ardp.201900264. Epub 2019 Dec 30.

Abstract

Twelve azole derivatives of emodin were designed to possess anti-inflammatory activity and synthesized via a two-step sequence composed of the Williamson ether reaction and N-alkylation. The anti-inflammatory properties of these compounds were evaluated in RAW264.7 cells by measuring lipopolysaccharide (LPS)-induced nitric oxide (NO) production. The introduction of imidazole and four carbons into the scaffold of emodin led to the discovery of the potent compound 7e, which showed the best inhibition of NO production among twelve analogs. In our experiential setting, the IC of compound 7e in NO production is 1.35 µM, which is lower than that of indomethacin. Mechanically, compound 7e effectively inhibited the protein and messenger RNA expressions of cyclooxygenase-2 and inducible NO synthase, as well as that of the proinflammatory cytokine interleukin-6, and the cytokines interleukin-1β and tumor necrosis factor-α in the LPS-stimulated RAW 264.7 macrophages. Compound 7e exerted inhibitory effects on the nuclear factor κB pathway by reducing the LPS-induced phosphorylation of the inhibitor of NF-κB and the nuclear translation of p-p65. These results suggest the potential of compound 7e in improving inflammatory conditions and diseases.

摘要

设计了 12 种大黄素的唑类衍生物,使其具有抗炎活性,并通过Williamson 醚反应和 N-烷基化两步序列合成。通过测量脂多糖(LPS)诱导的一氧化氮(NO)产生来评估这些化合物在 RAW264.7 细胞中的抗炎特性。在大黄素的结构中引入咪唑和四个碳原子,发现了具有强效抑制 NO 产生的化合物 7e,它在 12 种类似物中显示出最好的抑制效果。在我们的实验环境中,化合物 7e 在 NO 产生中的 IC 为 1.35µM,低于吲哚美辛。在机制上,化合物 7e 有效抑制了 COX-2 和诱导型 NO 合酶的蛋白和信使 RNA 表达,以及 LPS 刺激的 RAW 264.7 巨噬细胞中促炎细胞因子白细胞介素-6、白细胞介素-1β 和肿瘤坏死因子-α的表达。化合物 7e 通过减少 LPS 诱导的 NF-κB 抑制剂磷酸化和 p-p65 的核转位来抑制核因子 κB 通路。这些结果表明化合物 7e 具有改善炎症状况和疾病的潜力。

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