色谱 ›› 2026, Vol. 44 ›› Issue (7): 741-763.DOI: 10.3724/SP.J.1123.2025.10013

• 研究论文 • 上一篇    下一篇

基于超高效液相色谱-线性离子阱-静电场轨道阱质谱、网络药理学和动物实验探究川西合耳菊治疗急性湿疹的作用机制

丹增次珍1, 付新晨2, 罗派儿2, 罗亚春2, 邵美娟2, 解淑雅2, 葛浩宇2, 彭希帆2, 普布扎西3,*(), 严志宏2,*()   

  1. 1.西藏藏医药大学临床教研室,西藏 拉萨 850000
    2.江西中医药大学药学院,江西 南昌 330004
    3.西藏自治区藏医院皮肤科,西藏 拉萨 850000
  • 收稿日期:2025-10-27 出版日期:2026-07-08 发布日期:2026-07-09
  • 通讯作者: *Tel:0791-87119393,E-mail:yanzhihong03@126.com(严志宏); E-mai:187388212@QQ.com(普布扎西).
  • 基金资助:
    国家自然科学基金项目(82160827);2022年度藏医药基础教育部重点实验室开放项目(ZYYJC-22-02)

Exploring the mechanism of action of Synotis solidaginea in treating acute eczema based on ultra performance liquid chromatography-linear trap quadrupole-Orbitrap mass spectrometry, network pharmacology and animal experiments

DANZENG Cizhen1, FU Xinchen2, LUO Paier2, LUO Yachun2, SHAO Meijuan2, XIE Shuya2, GE Haoyu2, PENG Xifan2, PUBU Zhaxi3,*(), YAN Zhihong2,*()   

  1. 1.Clinical Teaching and Research Office,Xizang Tibetan Medical University,Lhasa 850000,China
    2.College of Pharmacy,Jiangxi University of Traditional Chinese Medicine,Nanchang 330004,China
    3.Department of Dermatology,Tibetan Hospital of Xizang Autonomous Region,Lhasa 850000,China
  • Received:2025-10-27 Online:2026-07-08 Published:2026-07-09
  • Supported by:
    National Natural Science Foundation of China(82160827);2022 Annual Open Project of the Key Laboratory of Tibetan Medicine Basic Research, Ministry of Education(ZYYJC-22-02)

摘要:

采用静电场轨道阱质谱(UPLC-LTQ-Orbitrap-MS)法,结合二级质谱图和文献鉴定川西合耳菊化学成分,通过TCMSP数据库和SwissTargetPrediction数据库筛选成分靶点,采用Gene Cards数据库、OMIM数据库筛选急性湿疹的相关靶点,川西合耳菊成分靶点与疾病靶点取交集得到潜在作用靶点,使用String网站及Cytoscape 3.10.1软件构建蛋白质-蛋白质相互作用网络,对潜在靶点进行基因本体论(GO)、京都基因与基因组百科全书(KEGG)分析,运用Cytoscape 3.10.1软件构建成分-靶点-通路网络图,并对关键靶点进行核心化合物分子对接。设计动物实验验证,通过2,4-二硝基氯苯诱导,建立了昆明小鼠(KM小鼠)急性湿疹模型,从整体动物水平评估其疗效,并采用苏木精-伊红染色(HE)、酶联免疫吸附测定、实时荧光定量聚合酶链反应(qRT-PCR)及蛋白质印迹法等技术探讨其抗炎及调控信号通路的作用。结果表明,从川西合耳菊中鉴定出59种化合物,并进一步筛选出7个潜在活性成分:异鼠李素、山柰酚、木犀草素、槲皮素、杨梅素、甜菜碱和迷迭香酸。通过靶点数据库预测,这7个成分共对应192个蛋白质作用靶点。同时,从疾病数据库中检索获得2 214个与急性湿疹相关的蛋白质靶点。将上述两组靶点进行映射(取交集),共获得75个共同靶点,这些蛋白质被认为是川西合耳菊治疗急性湿疹的潜在关键靶点;分子对接结果表明异鼠李素、木犀草素、槲皮素、山柰酚、杨梅素与蛋白质靶点原癌基因酪氨酸蛋白激酶SRC及基质金属蛋白酶9均有较好的结合能力。动物实验表明,川西合耳菊可降低肿瘤坏死因子α(TNF-α)、白细胞介素6(IL-6)以及白细胞介素17(IL-17)的含量,升高干扰素γ的含量来恢复辅助性T细胞1/辅助性T细胞2(Th1/Th2)平衡,通过抑制磷脂酰肌醇3-激酶/蛋白激酶B(PI3K/Akt)信号通路来减轻炎症反应,改善急性湿疹小鼠的临床症状。综上,该方法快速、有效、全面地分析了川西合耳菊中的化学成分,揭示了川西合耳菊治疗急性湿疹的作用机制,为川西合耳菊的进一步开发利用提供了参考依据。

关键词: 川西合耳菊, 超高效液相色谱-线性离子阱-静电场轨道阱质谱, 急性湿疹, 网络药理学, 分子对接

Abstract:

This study employed an integrated strategy combining ultra performance liquid chromatography-linear trap quadrupole-Orbitrap mass spectrometry (UPLC-LTQ-Orbitrap-MS), network pharmacology, molecular docking simulations, and in vivo animal experimentation to systematically analyze the active components of SynotissolidagineaS. solidaginea) and to elucidate its underlying therapeutic mechanism in the treatment of acute eczema. Initially, the UPLC-LTQ-Orbitrap-MS method was utilized to perform a comprehensive chemical profiling of S. solidaginea extract. Based on accurate mass, multistage fragmentation spectra, and cross-validation with literature and reference standards, 59 constituents were unambiguously or tentatively identified. Subsequently, a network pharmacology framework was established to predict the potential pharmacological mechanisms of the identified compounds. Among the characterized constituents, seven bioactive ingredients—namely isorhamnetin, kaempferol, luteolin, quercetin, myricetin, betaine, and rosmarinic acid—were selected as the primary active components based on their relative abundance and favorable oral bioavailability and drug-likeness properties as predicted by the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform (TCMSP). The corresponding potential protein targets of these seven compounds were systematically screened using the TCMSP database and the SwissTargetPrediction tool, resulting in the identification of 192 component-associated targets after the removal of duplicate entries. Concurrently, a comprehensive collection of disease-associated targets was curated for acute eczema. By querying the GeneCards database and the Online Mendelian Inheritance in Man (OMIM) database with the keyword “acute eczema”, a total of 2 214 distinct therapeutic targets relevant to the pathogenesis and progression of the dermatological condition were retrieved. Through the construction of a Venn diagram to map the component-related targets onto the disease-specific target set, a core network comprising 75 overlapping targets was identified as the potential therapeutic intersection through which S. solidaginea exerts its pharmacological effects against acute eczema. To further investigate the functional interactions and biological significance of these 75 intersecting proteins, a protein-protein interaction (PPI) network was constructed using the STRING database (version 12.0) and subsequently visualized and topologically analyzed using Cytoscape 3.10.1 software. Network topological analysis, specifically evaluating the degree centrality, betweenness centrality, and closeness centrality, highlighted SRC proto-oncogene tyrosine-protein kinase and matrix metalloproteinase 9 (MMP9) as the most prominent hub nodes within the network, suggesting their pivotal roles in mediating the therapeutic activity. Furthermore, Gene Ontology (GO) functional annotation and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses were conducted on the 75 potential targets. The GO enrichment analysis indicated that these targets were predominantly involved in biological processes related to the regulation of inflammatory responses, cellular response to oxidative stress, and positive modulation of cytokine production. The KEGG pathway analysis further revealed that the therapeutic effects of S. solidaginea are likely orchestrated through the modulation of several critical signaling cascades, with the PI3K/Akt signaling pathway being the most significantly enriched pathway. To validate the credibility of these computational predictions at the molecular level, molecular docking simulations were performed to evaluate the binding affinities and interaction modes between the core active flavonoids and the identified hub targets. The docking results demonstrated that isorhamnetin, luteolin, quercetin, kaempferol, and myricetin all exhibited strong and stable binding conformations within the active catalytic pockets of both SRC and MMP9. These compounds were observed to form critical hydrogen bonds and hydrophobic interactions with key amino acid residues, indicating a favorable thermodynamic profile and a high potential for functional inhibition of these key targets in vivo. The final phase of this investigation involved experimental validation using an established murine model of acute eczema. The model was successfully induced on the dorsal skin of KM mice through repeated topical sensitization and challenge with 2,4-dinitrochlorobenzene. Following model establishment, the therapeutic impact of S. solidaginea administration was rigorously assessed at the macroscopic, microscopic, and molecular levels. Macroscopic observation and scoring of clinical symptoms revealed a significant amelioration of erythema, edema, and excoriation in the treatment groups. Histopathological examination of skin tissue sections stained with hematoxylin and eosin (HE) confirmed that S. solidaginea treatment markedly reduced epidermal hyperplasia, spongiosis, and dermal inflammatory cell infiltration. Mechanistically, quantitative analysis via enzyme-linked immunosorbent assay (ELISA) demonstrated that S. solidaginea treatment effectively down-regulated the serum concentrations of the key pro-inflammatory cytokines tumor necrosis factor-alpha (TNF-α), interleukin-6 (IL-6), and interleukin-17 (IL-17), while concurrently restoring the level of interferon-gamma (IFN-γ). This modulation of cytokine profiles indicates a beneficial shift toward restoring the T helper type 1 cell/T helper type 2 cell (Th1/Th2) immune balance, which is typically dysregulated in acute eczematous conditions. Most importantly, Western blot analysis of the lesional skin tissue provided direct biochemical evidence that the extract of S. solidaginea significantly inhibited the phosphorylation of phosphatidylinositol 3-kinase (PI3K) and protein kinase B (Akt), thereby confirming the suppression of the PI3K/Akt signaling pathway in vivo. In conclusion, this methodological approach enables the rapid, effective, and comprehensive characterization of the phytochemical profile of S. solidaginea. Furthermore, this study preliminarily elucidates that the therapeutic mechanism of this medicinal plant in treating acute eczema involves a multi-component and multi-target synergistic action, primarily through the alleviation of the cutaneous inflammatory response and the restoration of immune homeostasis via the inhibition of the PI3K/Akt signaling axis. These findings provide a robust scientific foundation and a valuable reference for the further development, clinical application, and quality control of S. solidaginea.

Key words: Synotis solidaginea, ultra performance liquid chromatography-linear trap quadrupole-Orbitrap mass spectrometry (UPLC-LTQ-Orbitrap-MS), acute eczema, network pharmacology, molecular docking

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