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Systematically Characterizing Chemical Profile and Potential Mechanisms of Qingre Lidan Decoction Acting on Cholelithiasis by Integrating UHPLC-QTOF-MS and Network Target Analysis

机译:结合UHPLC-QTOF-MS和网络目标分析系统表征清热利胆汤对胆石症的化学特征和潜在机制

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摘要

Qingre Lidan Decoction (QRLDD), a classic precompounded prescription, is widely used as an effective treatment for cholelithiasis clinically. However, its chemical profile and mechanism have not been characterized and elucidated. In the present study, a rapid, sensitive, and reliable ultraperformance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry method was established for comprehensively identifying the major constituents in QRLDD. Furthermore, a network pharmacology strategy based on the chemical profile was applied to clarify the synergetic mechanism. A total of 72 compounds containing flavonoids, terpenes, phenolic acid, anthraquinones, phenethylalchohol glycosides, and other miscellaneous compounds were identified, respectively. 410 disease genes, 432 compound targets, and 71 related pathways based on cholelithiasis-related and compound-related targets databases as well as related pathways predicted by the Kyoto Encyclopedia of Genes and Genomes database were achieved. Among these pathways and genes, pathway in cancer and MAPK signaling pathway may play an important role in the development of cholelithiasis. EGFR may be a crucial target in the conversion of gallstones to gallbladder carcinoma. Regulation of PRKCB/RAF1/MAP2K1/MAPK1 is associated with cell proliferation and differentiation. Thus, the fingerprint coupled with network pharmacology analysis could contribute to simplifying the complex system and providing directions for further research of QRLDD.
机译:清热利胆汤(QRLDD)是一种经典的预混处方,在临床上被广泛用作胆石症的有效治疗方法。但是,尚未对其化学特征和机理进行表征和阐明。在本研究中,建立了一种快速,灵敏,可靠的超高效液相色谱结合四极杆飞行时间质谱方法,以全面鉴定QRLDD中的主要成分。此外,基于化学特征的网络药理学策略被用于阐明协同作用机理。总共确定了72种化合物,分别包含类黄酮,萜烯,酚酸,蒽醌,苯乙基醇糖苷和其他杂类化合物。基于胆石症相关化合物和化合物相关靶标数据库以及《京都议定书》基因和基因组数据库预测的相关途径,获得了410种疾病基因,432种复合靶标和71种相关途径。在这些途径和基因中,癌症途径和MAPK信号传导途径可能在胆石症的发展中起重要作用。 EGFR可能是胆结石向胆囊癌转化的关键靶标。 PRKCB / RAF1 / MAP2K1 / MAPK1的调节与细胞增殖和分化有关。因此,结合网络药理学分析的指纹可以有助于简化复杂的系统,并为QRLDD的进一步研究提供指导。

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