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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Filtration of Active Components with Antioxidant Activity Based on the Differing Antioxidant Abilities of Schisandrae Sphenantherae Fructus and Schisandrae Chinensis Fructus through UPLC/MS Coupling with Network Pharmacology
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Filtration of Active Components with Antioxidant Activity Based on the Differing Antioxidant Abilities of Schisandrae Sphenantherae Fructus and Schisandrae Chinensis Fructus through UPLC/MS Coupling with Network Pharmacology

机译:通过UPLC / MS与网络药理学的UPLC / MS耦合,基于Schisandrae Sphenantherae Fructus和Schisandrae Chinensis果实的不同抗氧化能力过滤抗氧化活性的活性成分

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摘要

This study attempted to filter active components with antioxidant activities based on the differing antioxidant abilities of Schisandrae Sphenantherae Fructus ( SSF ) and Schisandrae Chinensis Fructus ( SCF ). First, the antioxidant activity of SSF and SCF was evaluated through the DPPH free radical scavenging method and compared with the half maximal inhibitory concentration (IC 50 ) value. Next, components of SSF and SCF were detected by employing ultrahigh-performance liquid chromatography-Q-Exactive Orbitrap mass spectrometry (UPLC-QEO/MS) technology, and differential compounds were screened out as potential antioxidant compounds by using Compound Discover 3.1 Software. After that step, in order to verify the antioxidant compounds, the network method was applied. Biological targets were searched in the GeneCards database, and that related to antioxidant ability were selected in the Comparative Toxicogenomics Database (CTD). Finally, the pharmacology network was constructed. Results showed that SSF and SCF possessed different compounds and antioxidant abilities. A total of 14 differential compounds such as γ -schizandrin, schisandrin B, schisandrin, and tigloylgomisin H between them were screened out and identified. Twenty targets associated with antioxidant activity contained MAP2K1, MAPK8, RPS6KB1, PRKCB, HIF1A, and so on were investigated. Thirty-six pathways contained HIF-1 signaling pathways, choline metabolism in cancer, serotonergic synapse, Fc epsilon RI signaling pathway, GnRH signaling pathway, and so on related to the above twenty targets were identified. The pharmacology network analysis indicated that the differential components may be helpful in treating various diseases, especially cancer, by exerting antioxidant activity. In conclusion, this study provided a novel method for identifying active components with antioxidant activity in SSF and SCF , and this method may be applicable for the filtration of bioactive components in other herbs.
机译:该研究试图根据Schisandrae Sphenantherae(SSF)和SchisandraeChinensis Fructus(SCF)的不同抗氧化能力,过滤有活性组分的抗氧化活性。首先,通过DPPH自由基清除方法评估SSF和SCF的抗氧化活性,并与半最大抑制浓度(IC 50)值进行比较。接下来,通过采用超高性能液相色谱-q-施加的偏心谱(UPLC-QEO / MS)技术来检测SSF和SCF的组分,通过使用复合发现3.1软件将差示化合物作为电位抗氧化剂筛选。在该步骤之后,为了验证抗氧化化合物,施加网络方法。在Genecards数据库中搜索生物学靶标,在比较毒物学中选择与抗氧化能力有关的抗氧化能力。最后,构建了药理学网络。结果表明,SSF和SCF具有不同的化合物和抗氧化能力。筛选出总共14种差分化合物,如γ-βandrin,Schisandrin B,Schisandrin和它们之间的替代石英素H,并鉴定出来。研究了与抗氧化活性相关的20个靶标含有MAP2K1,MAPK8,RPS6KB1,PRKCB,HIF1A等。鉴定了三十六条途径含有HIF-1信号通路,癌症中胆碱代谢,Serotonergic Synapsis,Fc epsilon Ri信号传导途径,GnRH信号通路等与上述20个靶标相关。药理学网络分析表明,通过施加抗氧化活性,差异组分可能有助于治疗各种疾病,尤其是癌症。总之,本研究提供了一种用于鉴定具有SSF和SCF中抗氧化活性的活性组分的新方法,并且该方法可适用于其他草药中的生物活性成分。

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