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栀子中环烯醚萜苷和西红花酸衍生物对弗氏完全佐剂诱导的大鼠关节炎的比较抗关节炎研究。

Comparative anti-arthritic investigation of iridoid glycosides and crocetin derivatives from Gardenia jasminoides Ellis in Freund's complete adjuvant-induced arthritis in rats.

机构信息

Department of Biopharmaceuticals and Materials Engineering, Zhuhai Key Laboratory of Fundamental and Applied Research in Traditional Chinese Medicine, Zunyi Medical University Zhuhai Campus, Zhuhai, China.

Institute of Human Virology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.

出版信息

Phytomedicine. 2019 Feb;53:223-233. doi: 10.1016/j.phymed.2018.07.005. Epub 2018 Jul 25.

Abstract

BACKGROUND

Discovering novel compounds with higher activities is a key aim of natural products research. Gardenia jasminoides Ellis is a herb with anti-inflammatory properties. Iridoid glycosides (mainly geniposide) and crocetin derivatives (crocins) are the two major active constituents in this herb and are considered its active ingredients. However, which components are responsible for the anti-inflammatory properties of gardenia have remained to be investigated.

PURPOSE

Here, we prepared total iridoid glycocides (TIG) and total crocins (TC) from G. jasminoides Ellis, determined their main chemical constituents, and performed animal studies to evaluate their anti-adjuvant arthritis activities, thus, proposing a reasonable mechenism to explain the anti-inflammatory activities of the active components in this herbal remedy.

STUDY DESIGN

TIG and TC were prepared by using HPD-100 macroporous resin, and characterized by UHPLC-DAD-MS and UV-Vis spectrophotometer. Then, freund's complete adjuvant-injected rats underwent drug treatments with TIG (160 mg/kg) and TC (160 mg/kg) for 14 days, and their ankle diameters were measured. Moreover, X-ray radiographs of the adjuvant injected hind paws were evaluated. Finally, histopathological examinations of the ankle joints, spleens and thymus were carried out to evaluate inflammatory reactions, and immunohistochemical measurements were conducted to evaluate TNF-α and TGF-β1 expression in the ankle joint of the rats.

RESULTS

The chemical composition determination of the current study showed that TIG was mainly composed of geniposide and TC was a fraction predominantly with crocin-1, crocin-2 and crocin-3. Calculation of results showed that TIG and TC contained 58.2% total iridoid glycosides and 54.7% total crocins, respectively. Our study suggested TIG and TC treatments markedly decreased paw swelling and ankle diameters of AA rats (both p < 0.05). The radiological analysis showed that administration of TIG and TC ameliorated bone destruction, and reduced the radiological bone destruction scores (TIG p < 0.05, TC p>0.05). Moreover, data from histological assessment demonstrated considerable mitigation of inflammation in the joints (both p < 0.01), spleen and thymus of AA rats treated with TIG and TC. TNF-α and TGF-β1 protein expression according to immunohistochemistry staining also supported the anti-arthritis activities of TIG and TC (TNF-α: TIG p < 0.01 and TC p < 0.05, TGF-β1: TIG p < 0.01 and TC p>0.05).

CONCLUSION

In the current study, fractionation of gardenia prior to further in vivo investigation has for the first time provided reasonable explanation for the anti-inflammatory activity of this herbal remedy. Our study showed that both TIG and TC from gardenia have anti-inflammatory properties. Overall, these experimental findings suggest that gardenia could be regarded as a potential therapeutic target for arthritis. However, as geniposide has a higher content than crocins in this herbal drug, TIG (mainly geniposide) seems to be primarily responsible for the anti-inflammatory properties of gardenia. Taken together, this maiden attempt demonstrated that TIG (mainly geniposide) is more important in evaluating the anti-inflammatory activity of G. jasminoides Ellis.

摘要

背景

发现具有更高活性的新型化合物是天然产物研究的主要目标。栀子是一种具有抗炎特性的草药。其主要活性成分是环烯醚萜苷(主要是京尼平苷)和西红花酸衍生物(西红花苷)。然而,栀子的抗炎特性取决于哪些成分仍有待研究。

目的

本研究从栀子中提取总环烯醚萜苷(TIG)和总西红花苷(TC),鉴定其主要化学成分,并进行动物研究评估其抗佐剂性关节炎活性,从而提出一个合理的机制来解释该草药中活性成分的抗炎活性。

研究设计

采用 HPD-100 大孔树脂提取 TIG 和 TC,采用 UHPLC-DAD-MS 和 UV-Vis 分光光度计进行鉴定。然后,弗氏完全佐剂注射大鼠用 TIG(160mg/kg)和 TC(160mg/kg)治疗 14 天,测量其踝关节直径。此外,评估佐剂注射后后爪的 X 射线照片。最后,对踝关节、脾脏和胸腺进行组织病理学检查,以评估炎症反应,并进行免疫组织化学测量,以评估大鼠踝关节中 TNF-α和 TGF-β1 的表达。

结果

本研究的化学成分测定表明,TIG 主要由京尼平苷组成,TC 主要由西红花苷-1 组成,其次是西红花苷-2 和西红花苷-3。计算结果表明,TIG 和 TC 分别含有 58.2%的总环烯醚萜苷和 54.7%的总西红花苷。我们的研究表明,TIG 和 TC 治疗可显著降低 AA 大鼠的足肿胀和踝关节直径(均 p<0.05)。放射学分析表明,TIG 和 TC 治疗可改善骨破坏,并降低放射学骨破坏评分(TIG p<0.05,TC p>0.05)。此外,来自组织学评估的数据表明,TIG 和 TC 治疗可显著减轻 AA 大鼠关节(均 p<0.01)、脾脏和胸腺的炎症。根据免疫组织化学染色的 TNF-α和 TGF-β1 蛋白表达也支持 TIG 和 TC 的抗关节炎活性(TNF-α:TIG p<0.01 和 TC p<0.05,TGF-β1:TIG p<0.01 和 TC p>0.05)。

结论

本研究首次对栀子进行了进一步的体内研究前的分离,为这种草药的抗炎活性提供了合理的解释。我们的研究表明,栀子中的 TIG 和 TC 均具有抗炎作用。总的来说,这些实验结果表明栀子可能是关节炎的潜在治疗靶点。然而,由于京尼平苷在这种草药中的含量高于西红花苷,TIG(主要是京尼平苷)似乎主要负责栀子的抗炎特性。综上所述,这项初步尝试表明 TIG(主要是京尼平苷)在评估栀子的抗炎活性方面更为重要。

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