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Comparison of Anti-Inflammatory Activities of Structurally Similar Triterpenoids Isolated from Bitter Melon

机译:苦瓜分离结构类似的三萜酸的抗炎活动比较

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Momordica charantia L., or bitter melon, has been suggested to exhibit anti-inflammatory activity. In a previous study, three structurally similar triterpenes, namely 5 beta,19-epoxy-25-methoxycucurbita-6,23-diene-3 beta,19-diol (EMCD), 5 beta,19-epoxy-25-methoxycucurbita-6,23-dien-3 beta-ol (EMCO), and 5 beta,19-epoxy-19,25-dimethoxycucurbita-6,23-dien-3 beta-ol (EDMO), were isolated from bitter melon. EMCD has been shown to exhibit in vitro anti-inflammatory activity. In this study, the anti-inflammatory activities of EMCD, EMCO, and EDMO were compared. All three compounds were toxic to the RAW 264.7 macrophage cell line but not the FL83B cells. EMCD and EMCO inhibited tumor necrosis factor (TNF)-alpha-induced inducible nitric oxide synthase (iNOS) expression in FL83B cells, and the IC50 values were 19.8 and 25.7 mu M, respectively. By contrast, EDMO did not effectively reduce iNOS expression. Furthermore, EMCD and EMCO suppressed other TNF-alpha-induced proinflammatory signals including the activation of inhibitor kappa B kinase complex, the phosphorylation of inhibitor of nuclear factor-kappa B, and the activation of c-Jun N-terminal kinase. EMCD consistently exhibited a higher efficacy than did EMCO in these assays. Hence, the in vivo anti-inflammatory activity of EMCD was tested. EMCD clearly repressed 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced ear edema in mice. In conclusion, differences in the functional group on carbon 19 do affect the anti-inflammatory activities of EMCD, EMCO, and EDMO. EMCD exhibited the highest anti-inflammatory activity among these molecules, and its in vivo anti-inflammatory activity was confirmed.
机译:已经提出了Momordica Charantia L.或苦瓜或苦瓜表现出抗炎活性。在先前的研究中,三种结构相似的三萜,即5β,19-环氧-25-甲氧基甲氧基-6,23-二烯-3β,19-二醇(EMCD),5β,19-环氧-25-甲氧基疾病?-6 ,23-DIEN-3β-OL(EMCO)和5β,19-环氧-19,25-二甲氧基CCUCUCA-6,23-DIEN-3β-OL(EDMO)与苦瓜分离。 EMCD已被证明表现出体外抗炎活性。在这项研究中,比较了EMCD,EMCO和EDMO的抗炎活动。所有三种化合物对原料264.7巨噬细胞系毒性毒性,而不是FL83B细胞。 EMCD和EMCO抑制在FL83B细胞中的肿瘤坏死因子(TNF)诱导的诱导型诱导的一氧化氮合酶(INOS)表达,分别为19.8和25.7μm。相比之下,EDMO没有有效地减少INOS表达。此外,EMCD和EMCO抑制了其他TNF-α诱导的促炎信号,包括抑制剂Kappa B激酶复合物的激活,核因子-Kappa B的抑制剂的磷酸化,以及C-Jun N-末端激酶的活化。 EMCD一直表现出比这些测定中的EMCO更高的疗效。因此,测试EMCD的体内抗炎活性。 EMCD在小鼠中清楚地将12-O-四癸酰卟啉-13-醋酸盐(TPA)诱导的耳朵水肿抑制。总之,碳19型功能组的差异影响EMCD,EMCO和EDMO的抗炎活动。 EMCD在这些分子中表现出最高的抗炎活性,并确认其体内抗炎活性。

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