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青熊软膏及其活性成分紫草素通过 HIF-1 信号通路治疗银屑病。

Qingxiong Ointment and its Active Ingredient, Shikonin Treat Psoriasis through HIF-1 Signaling Pathway.

机构信息

Derpartment of Surgery VIII (Dermatology and Sores), Shanghai Municipal Hospital of Traditional Chinese Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai 200071, China.

Department of Dermatology, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai 200437, China.

出版信息

Curr Pharm Des. 2024;30(24):1927-1938. doi: 10.2174/0113816128287142240529120346.

Abstract

BACKGROUND

Psoriasis is a common chronic inflammatory skin disorder. Qingxiong ointment (QX) is a natural medicinal combination frequently employed in clinical treatment of psoriasis. However, the active ingredients of QX and its precise mechanisms of improving psoriasis remain unclear. This study elucidated the effects of QX on an Imiquimod (IMQ)-induced mouse model of psoriasis while also exploring the regulation of the active ingredient of QX, shikonin, on the HIF-1 signaling pathway in HaCaT cells.

METHODS

A mouse model of psoriasis was established through topical application of IMQ, and the local therapeutic effect of QX was evaluated using dorsal skin tissue with mouse psoriatic lesion and Psoriasis Area Severity Index (PASI) scores, hematoxylin-eosin (HE) staining, and immunohistochemical staining. Elisa and qPCR were employed to identify changes in the expression of inflammation-related factors in the mouse dorsal skin. Immunofluorescence was used to assess changes in the expression of T cell subsets before and after treatment with various doses of QX. HPLC was used to analyze the content of shikonin, and network pharmacology was employed to analyze the main targets of shikonin. Immunofluorescence was used to identify the effects of shikonin on the HIF-1 signaling pathway in IL6-induced psoriasis HaCaT cells. Finally, qPCR was used to identify the differential expression of the HIF-1 signaling pathway in skin tissues.

RESULTS

QX significantly reduces PASI scores on the backs of IMQ-induced psoriasis mice. HE staining reveals alleviated epidermal thickness in the QX group. Immunohistochemical analysis shows a significant reduction in ICAM, KI67, and IL17 expression levels in the QX group. Immunofluorescence results indicate that QX can notably decrease the proportions of CD4 T cells, γδ T cells, and CD8 T cells while increasing the proportion of Treg cells. Network pharmacology analysis demonstrates that the main targets of shikonin are concentrated in the HIF-1 signaling pathway. Molecular docking results show favorable binding affinity between shikonin and key genes of the HIF-1 signaling pathway. Immunofluorescence results reveal that shikonin significantly reduces p-STAT3, SLC2A1, HIF1α, and NOS2 expression levels. qPCR results show significant downregulation of the HIF-1 signaling pathway at cellular and tissue levels.

CONCLUSION

Our study revealed that QX can significantly reduce the dorsal inflammatory response in the IMQ-induced psoriasis mouse model. Furthermore, we discovered that its main component, shikonin, exerts its therapeutic effect by diminishing the HIF-1 signaling pathway in HaCaT cells.

摘要

背景

银屑病是一种常见的慢性炎症性皮肤病。青雄软膏(QX)是一种常用于临床治疗银屑病的天然药物组合。然而,QX 的活性成分及其改善银屑病的确切机制尚不清楚。本研究阐明了 QX 对咪喹莫特(IMQ)诱导的银屑病小鼠模型的影响,同时还探讨了 QX 的活性成分紫草素对 HaCaT 细胞中 HIF-1 信号通路的调节作用。

方法

通过局部应用 IMQ 建立银屑病小鼠模型,通过小鼠银屑病皮损和银屑病面积严重程度指数(PASI)评分、苏木精-伊红(HE)染色和免疫组织化学染色评估 QX 对背部皮肤的局部治疗效果。采用 ELISA 和 qPCR 检测小鼠背部皮肤中炎症相关因子表达的变化。免疫荧光法检测不同剂量 QX 治疗前后 T 细胞亚群的表达变化。高效液相色谱法(HPLC)分析紫草素的含量,网络药理学分析紫草素的主要靶点。免疫荧光法检测紫草素对 IL6 诱导的银屑病 HaCaT 细胞中 HIF-1 信号通路的影响。最后,qPCR 检测皮肤组织中 HIF-1 信号通路的差异表达。

结果

QX 可显著降低 IMQ 诱导的银屑病小鼠背部的 PASI 评分。HE 染色显示 QX 组表皮厚度减轻。免疫组织化学分析显示 QX 组 ICAM、KI67 和 IL17 表达水平显著降低。免疫荧光结果表明,QX 可显著降低 CD4T 细胞、γδT 细胞和 CD8T 细胞的比例,增加 Treg 细胞的比例。网络药理学分析表明,紫草素的主要靶点集中在 HIF-1 信号通路。分子对接结果显示紫草素与 HIF-1 信号通路的关键基因具有良好的结合亲和力。免疫荧光结果显示,紫草素可显著降低 p-STAT3、SLC2A1、HIF1α 和 NOS2 的表达水平。qPCR 结果显示,细胞和组织水平上 HIF-1 信号通路的表达显著下调。

结论

本研究表明,QX 可显著减轻 IMQ 诱导的银屑病小鼠模型背部的炎症反应。此外,我们发现其主要成分紫草素通过抑制 HaCaT 细胞中的 HIF-1 信号通路发挥治疗作用。

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