首页|荔枝草抗炎质量标志物的研究

荔枝草抗炎质量标志物的研究

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目的 阐明荔枝草抗炎质量标志物,并对其含量进行测定,为荔枝草药材质量控制提供参考。方法 采用高效液相色谱-四极杆飞行时间串联质谱法(UPLC-Q-TOF-MS/MS)表征荔枝草的主要成分,根据二级质谱裂解碎片信息,并结合文献数据,进行分析鉴定。进一步通过SwissADME平台,从鉴定获得的化学成分中筛选出口服生物利用度(Oral bioavailability,OB)高且符合类药五原则的活性成分;运用SwissTargetPrediction数据库查找和预测荔枝草的成分靶点;通过在线人类孟德尔遗传数据库(Online Mendelian Inheritance in Man,OMIM)、GeneCards数据库等筛选疾病靶点。采用String11。5 数据库和Cytoscape3。7。2软件构建PPI网络,并筛选核心靶点。利用DAVID6。8进行基因本体(Gene ontology,GO)注释和KEGG通路富集分析,对富集得到的通路进行实验验证,以阐明其作用机制。对关键通路采用反向溯源分析潜在的药效物质基础进行实验验证,并建立高效液相含量测定方法。结果 从荔枝草中共鉴定出36个主要成分,包括黄酮类、萜类化合物等;进一步筛选出活性成分与疾病交集靶点190个;通过网络拓扑筛选获得核心靶点18个;富集分析发现荔枝草抗炎作用主要涉及的通路为NF-κB信号通路、PI3K-Akt信号通路、TNF信号通路。对NF-κB信号通路进行反向溯源得到高车前苷、高车前素、木犀草素和异鼠李素4个相关成分,分子对接发现其与PTGS2的活性位点的结合能分别为-9。5、-9。7、-9。4和-9。4 kcal·mol-1,均具有良好的对接活性。根据质量标志物的可测性,确定高车前苷和高车前素可作为荔枝草的抗炎质量标志物。Western blot实验结果表明高车前苷和高车前素能显著降低COX-2和NF-κB p-p65的表达(P<0。05,P<0。01)。结论 荔枝草抗炎质量标志物为高车前苷和高车前素,可通过NF-κB通路发挥抗炎作用。
Identification of Q-Markers Associated with the Anti-Inflammatory Effects of Salvia plebeia
Objective To clarify the anti-inflammatory quality markers(Q-markers)of Salvia plebeia and determine their contents,so as to provide a reference for the quality control of Salvia plebeia.Methods The main components of Salvia plebeia were characterized by high-performance liquid chromatography-quadrupole time-of-flight tandem mass spectrometry(UPLC-Q-TOF-MS/MS).According to the fragmentation information of the secondary mass spectrometry and the literature data,the analysis and identification were carried out.Further,the active components with high oral bioavailability(OB)and in line with the five principles of drug-like(DL)were screened from the identified chemical components through the SwissADME platform.The SwissTargetPrediction database was used to find and predict the component targets of Salvia plebeia.Disease targets were screened through online Mendelian Inheritance in Man(OMIM),GeneCards database,etc.String11.5 database and Cytoscape3.7.2 software were used to construct the PPI network and screen core targets.Gene Ontology(GO)annotation and KEGG pathway enrichment analysis were performed using DAVID6.8,and the enriched pathways were verified by experiments to clarify their mechanism of action.Reverse traceability was used to analyze the potential pharmacodynamic material basis of key pathways,experimental verification was carried out,and high-performance liquid chromatography(HPLC)content determination method was established.Results 36 main components were identified,including flavonoids and terpenoids.Further screening of 190 active ingredients and disease intersection targets;through network topology screening,18 core targets were obtained;enrichment analysis showed that the primary pathways involved in the anti-inflammatory effect of Salvia plebeia include:NF-κB signaling pathway,PI3K-Akt signaling pathway and TNF signaling pathway.Four related components including homoplantaginin,hispidulin,luteolin and isorhamnetin were obtained by reverse traceability of the NF-κB signaling pathway.Molecular docking demonstrated excellent docking activities of the 4 components to PTGS2 with the binding energies of-9.5,-9.7,-9.4,and-9.4 kcal·mol-1,respectively.According to the measurability of quality markers,it was determined that homoplantaginin and hispidulin could be used as anti-inflammatory quality markers of Salvia plebeia.Western Blot results showed that homoplantaginin and hispidulin could significantly reduce the expression of COX-2 and NF-κB p-p65(P<0.05,P<0.01).Conclusion The anti-inflammatory quality markers of Salvia plebeia are homoplantaginin and hispidulin,which can exert anti-inflammatory effects through the NF-κB pathway.

Salvia plebeianAnti-inflammatoryQ-MarkerMolecular dockingHomoplantagininHispidulin

孔庆新、王淇漩、汲晓玲、刘学琴、李泽浩、曲中原

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重庆化工职业学院 重庆 401228

哈尔滨商业大学药学院 哈尔滨 150076

荔枝草 抗炎 质量标志物 分子对接 高车前苷 高车前素

重庆市教育委员会重点项目

KJZD-K202104501

2024

世界科学技术-中医药现代化
中科院科技政策与管理科学研究所,中国高技术产业发展促进会

世界科学技术-中医药现代化

CSTPCD北大核心
影响因子:1.175
ISSN:1674-3849
年,卷(期):2024.26(5)
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