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几种环烯醚萜对环氧合酶-1、环氧合酶-2 酶活性、肿瘤坏死因子-α和一氧化氮产生的抑制作用的体外研究。

Inhibitory Potencies of Several Iridoids on Cyclooxygenase-1, Cyclooxygnase-2 Enzymes Activities, Tumor Necrosis factor-α and Nitric Oxide Production In Vitro.

机构信息

Natural Products Research Institute, College of Pharmacy, Seoul National University, 28-Yungun-dong, Jongro-ku, Seoul 110-460, Korea.

出版信息

Evid Based Complement Alternat Med. 2010 Mar;7(1):41-5. doi: 10.1093/ecam/nem129. Epub 2007 Dec 3.

Abstract

To verify the anti-inflammatory potency of iridoids, seven iridoid glucosides (aucubin, catalpol, gentiopicroside, swertiamarin, geniposide, geniposidic acid and loganin) and an iridoid aglycone (genipin) were investigated with in vitro testing model systems based on inhibition of cyclooxygenase (COX)-1/-2 enzymes, the tumor necrosis factor-α (TNF-α) formation and nitric oxide (NO) production. The hydrolyzed-iridoid products (H-iridoid) with β-gludosidase treatment only showed inhibitory activities, and revealed different potencies, depending on their chemical structures. Without the β-gludosidase treatment, no single iridoid glycoside exhibited any activities. The aglycone form (genipin) also did not show inhibitory activities. To compare anti-inflammatory potency, the inhibitory concentrations (IC(50)) in each testing system were measured. The hydrolyzed-aucubin product (H-aucubin) with β-gludosidase treatment showed a moderate inhibition on COX-2 with IC(50) of 8.83 μM, but much less inhibition (IC(50), 68.9 μM) on COX-1 was noted. Of the other H-iridoid products, the H-loganin and the H-geniposide exhibited higher inhibitory effects on COX-1, revealing IC(50) values of 3.55 and 5.37 μM, respectively. In the case of TNF-α assay, four H-iridoid products: H-aucubin, H-catalpol, H-geniposide and H-loganin suppressed the TNF-α formation with IC(50) values of 11.2, 33.3, 58.2 and 154.6 μM, respectively. But other H-iridoid products manifested no significant activity. Additional experiments on NO production were conducted. We observed that only the H-aucubin exhibited a significant suppression with IC(50) value of 14.1 μM. Genipin, an agycone form, showed no inhibitory effects on all testing models, implying the hydrolysis of the glycosidic bond of iridoid glycoside is a pre-requisite step to produce various biological activities.

摘要

为了验证环烯醚萜苷的抗炎活性,采用基于环氧化酶(COX)-1/-2 酶抑制、肿瘤坏死因子-α(TNF-α)形成和一氧化氮(NO)产生的体外检测模型系统,对 7 种环烯醚萜苷(桃叶珊瑚苷、梓醇、龙胆苦苷、獐牙菜苦苷、当药苦苷、当药苷酸和京尼平苷酸)和 1 种环烯醚萜苷配基(京尼平)进行了研究。经β-葡萄糖苷酶处理后的水解环烯醚萜产物(H-iridoid)仅显示出抑制活性,并且根据其化学结构呈现出不同的效力。未经β-葡萄糖苷酶处理,没有单一的环烯醚萜苷显示出任何活性。苷元形式(京尼平)也没有显示出抑制活性。为了比较抗炎效力,在每个检测系统中测量了抑制浓度(IC(50))。经β-葡萄糖苷酶处理后的水解桃叶珊瑚苷产物(H-aucubin)对 COX-2 表现出中等抑制作用,IC(50)为 8.83 μM,但对 COX-1 的抑制作用较弱(IC(50)为 68.9 μM)。在其他 H-iridoid 产物中,H-京尼平苷和 H-当药苷对 COX-1 表现出更高的抑制作用,IC(50)值分别为 3.55 和 5.37 μM。在 TNF-α 测定中,四种 H-iridoid 产物:H-aucubin、H-catalpol、H-geniposide 和 H-loganin 分别以 IC(50)值 11.2、33.3、58.2 和 154.6 μM 的浓度抑制了 TNF-α 的形成。但其他 H-iridoid 产物表现出无明显活性。还进行了关于 NO 产生的附加实验。我们观察到只有 H-aucubin 表现出明显的抑制作用,IC(50)值为 14.1 μM。苷元形式京尼平对所有检测模型均无抑制作用,表明环烯醚萜苷的糖苷键水解是产生各种生物活性的前提条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37e4/2816382/f4a195ac1f4b/nem129f1.jpg

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