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麻黄汤减轻大鼠哮喘模型气道炎症并调节 IL-21/STAT3 信号通路。

Mahuang decoction mitigates airway inflammation and regulates IL-21/STAT3 signaling pathway in rat asthma model.

机构信息

Zhejiang Chinese Medical University, Hangzhou 310053, China.

Dongyang Traditional Chinese Medicine Hospital, Jinhua 322100, China.

出版信息

J Ethnopharmacol. 2018 Oct 5;224:373-380. doi: 10.1016/j.jep.2018.06.011. Epub 2018 Jun 12.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Nowadays, bronchial asthma is still a severe disease threatening human health, and it is incumbent upon us to seek effective therapeutic drugs. Mahuang decoction (MHD), a classic famous Chinese prescription, has been used for thousands of years to prevent phlegm from forming, stop coughing and relieve asthma, but the relevant mechanism has not been thoroughly clarified. This study aims to investigate the anti-airway inflammation effect of MHD and the possible molecular mechanism underlying IL21/STAT3 signaling pathway, so as to provide guidance for the treatment of MHD on bronchial asthma.

MATERIALS AND METHODS

Specific pathogen free SD rats were randomly divided into 6 groups: normal control group, model group, positive group (Compound methoxyphenamine), MHD-treated groups at doses of 10 ml/kg, 5 ml/kg and 2.5 ml/kg, 10 rats in each group. Except for the normal control group, rats in other groups were sensitized with ovalbumin via introperitoneal injection and challenged with ovalbumin inhalation to trigger asthma model. At 24 h after the last excitation, bronchoalveolar lavage fluid (BALF) of every rat was drawn and the number of inflammatory cells was analyzed using cell counting method. ELISA method was performed to determine the concentrations of TXB, 6-keto-PGF, MMP-9, TIMP-1, IL-2, IL-4, IL-5 and TNF-α in rat serum. The protein expressions of IL-21, IL-21R, STAT3 and p-STAT3 in murine pulmonary tissues were assessed with western blotting analysis.

RESULTS

Compared with the control group, the airway wall and airway smooth muscle of murine pulmonary tissues significantly thickened and massive inflammatory cells infiltration occurred around the bronchus in the model group, and the cell counts of WBC and EOS in BALF were also apparently increased, which indicated the rat asthma model was successfully established. MHD or Compound methoxyphenamine not only alleviated the pulmonary inflammatory pathological damages, but also down- regulated the numbers of WBC and EOS in BALF. What's more, the levels of TXB, MMP-9, TIMP-1, ILs-(2, 4, 5) and TNF-α in rat serum were lessened by the treatment of MHD. In western blotting analysis, treatment with 10 ml/kg or 5 ml/kg MHD markedly declined the increased protein expressions of IL-21, IL-21R, STAT3 and p-STAT3 in lung tissues of asthmatic rats to normal level.

CONCLUSION

MHD intervention demonstrated a strong inhibitory action on the secretion of inflammatory mediators as well as the inflammatory cell infiltration in pulmonary tissues of asthmatic rats, and also depressed the protein expressions of IL-21, IL-21R, STAT3 and p-STAT3 in pulmonary tissues. MHD effectively mitigates airway inflammation and regulates the IL-21/STAT3 signaling pathway in rat asthma model.

摘要

民族药理学相关性

如今,支气管哮喘仍是威胁人类健康的严重疾病,寻求有效的治疗药物是我们的当务之急。麻黄汤(MHD)是一种经典的著名中药方剂,已使用数千年,用于预防痰的形成、止咳和平喘,但相关机制尚未得到彻底阐明。本研究旨在探讨 MHD 对气道炎症的作用及其对 IL21/STAT3 信号通路的可能分子机制,为 MHD 治疗支气管哮喘提供指导。

材料和方法

特定病原体自由 SD 大鼠随机分为 6 组:正常对照组、模型组、阳性组(复方甲氧那明)、MHD 治疗组(10ml/kg、5ml/kg 和 2.5ml/kg),每组 10 只大鼠。除正常对照组外,其余各组大鼠均通过腹腔注射卵清蛋白致敏,卵清蛋白吸入激发诱发哮喘模型。末次激发后 24 小时,抽取每只大鼠的支气管肺泡灌洗液(BALF),用细胞计数法分析炎症细胞数量。采用 ELISA 法测定大鼠血清中 TXB、6-keto-PGF、MMP-9、TIMP-1、IL-2、IL-4、IL-5 和 TNF-α的浓度。采用 Western blot 分析检测小鼠肺组织中 IL-21、IL-21R、STAT3 和 p-STAT3 的蛋白表达。

结果

与对照组相比,模型组小鼠肺组织气道壁和气道平滑肌明显增厚,支气管周围大量炎症细胞浸润,BALF 中白细胞和 EOS 细胞计数明显增加,表明大鼠哮喘模型成功建立。MHD 或复方甲氧那明不仅减轻了肺部炎症性病理损伤,还降低了 BALF 中白细胞和 EOS 的数量。此外,MHD 治疗还降低了大鼠血清中 TXB、MMP-9、TIMP-1、ILs-(2、4、5)和 TNF-α 的水平。Western blot 分析显示,10ml/kg 或 5ml/kg MHD 治疗可显著降低哮喘大鼠肺组织中 IL-21、IL-21R、STAT3 和 p-STAT3 蛋白表达的增加,使其恢复正常水平。

结论

MHD 干预对哮喘大鼠肺组织中炎症介质的分泌和炎症细胞浸润具有较强的抑制作用,并抑制了肺组织中 IL-21、IL-21R、STAT3 和 p-STAT3 的蛋白表达。MHD 有效减轻气道炎症,调节大鼠哮喘模型中 IL-21/STAT3 信号通路。

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