首页> 外文期刊>Journal of Analytical Methods in Chemistry >Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
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Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times

机译:同时测定川芎中多元素和抗血小板聚集生物活性的夜间有效成分及相关分析,对不同煎剂的川芎中体外

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Several effective constituents, such as vanillin, ferulic acid, senkyunolide I, senkyunolide H, coniferyl ferulate, Z-ligustilide, butylphthalide, senkyunolide A, and levistilide A, are unstable and possess mutual transformation relationships in Chuanxiong Rhizoma (CR). Traditional Chinese medicine mainly involves decoction, and the content of effective constituents and antiplatelet aggregation bioactivity (AAB) in CR may vary with different decoction time (10?min, 20?min, 30?min, 40?min, 50?min, and 60?min). Here, we showed that coniferyl ferulate and levistilide A were detected in CR material, but not in the decoction. The effective components possessed transformation and degradation in CR decoction of different times. The effective components and the strength of AAB at 10 and 20 minutes were the strongest, followed by 30–50 minutes, and 60 minutes were the weakest by analysis of SIMCA-PLS in CR decoction of different times. In the Pearson correlation analysis, there were correlations (P0.05) between effective components, which were ferulic acid and senkyunolide I (coefficient was 0.976), ferulic acid and senkyunolide H (coefficient was 0.972), senkyunolide I and senkyunolide H (coefficient was 0.982), senkyunolide A and butylphthalide (coefficient was 0.974), senkyunolide A and Z-ligustilide (coefficient was 0.947), and butylphthalide and Z-ligustilide (coefficient was 0.993). Effective components (ferulic acid, senkyunolide I, and senkyunolide H) and AAB were correlated and the Pearson correlation coefficients were respectively 0.965, 0.973, and 0.999. In the stepwise regression analysis, senkyunolide H and senkyunolide I were correlated with AAB (P0.05). Senkyunolide H (H) was positively correlated with AAB, senkyunolide I (I) was negatively correlated with AAB, and its expression was AAB?=?1.187???H???0.199???I???0.422. These findings indicate that there are some correlations between effective components and AAB in CR.
机译:几种有效的成分,如香草素,阿魏酸,SenkyonoLide I,Senkyunolide H,Coniferyl丙烯,Z-锂硫酸盐,丁二酰苯甲酸丁苯胺,Senkynolide A和Levistilide A,是不稳定的,并且具有川芎的互换关系(Cr)。中药主要涉及煎汤,CR中有效成分和抗血小板聚集生物活性(AAB)的含量可能随不同的煎剂时间(10?分钟,20?min,30?min,40?min,50?min,50?min 60?分钟)。在这里,我们表明,在Cr材料中检测到Coniferyl Ferulate和Levistilide A,但不在煎汤中检测。有效成分具有不同时间的Cr汤剂的转化和降解。 AAB在10和20分钟的有效组分和强度是最强,其次是30-50分钟,通过分析不同时间的Cr汤中的SIMCA-PL,60分钟是最弱的。在Pearson相关分析中,有效成分之间存在相关性(P <0.05),其是阿魏酸和Senkynolide I(系数为0.976),阿魏酸和Senynolide H(系数为0.972),Senkyunolide I和Senkyunolide H(系数是0.982),Senkyunolide A和丁基苯二甲酸(系数为0.974),SenKeyLide A和Z-Ligustilide(系数为0.947),以及丁基苯二甲苯丙甲酯和Z-Ligustilide(系数为0.993)。有效的组分(阿魏酸,SenkyonoLide I和Senkyunolide H)和AAB是相关的,并且Pearson相关系数分别为0.965,0.973和0.999。在逐步回归分析中,Senkyunolide H和Senkyunolide I与AAB相关(P <0.05)。 SenkyunoLide H(h)与AAb呈正相关,Senkyunolide I(i)与AAB呈负相关,其表达是AAB?=?1.187 ??? H ??? 0.199 ??? 0.422。这些发现表明,在CR中有效成分和AAB之间存在一些相关性。

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