School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, Liaoning, PR China.
School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, Liaoning, PR China.
Phytomedicine. 2019 Jun;59:152790. doi: 10.1016/j.phymed.2018.12.013. Epub 2018 Dec 11.
Herbal medicine (HM), as a complex system, is difficult to investigate their quality consistency effectively by chromatographic fingerprinting obtained in a single detection method. Moreover, active compound discovery affords no information about pharmacological activity until late in the discovery process, and the interaction between HMs in vitro is not yet clear, which requires sufficient practice to prove their effectiveness.
Therefore, the purpose of this study was to improve the quality control methods of Compound Liquorice Tablet (CLT) using multi-wavelength fusion fingerprinting, explore the possible antioxidant components and assess the interaction between herbs combined with bioactivity evaluation.
Once the theoretical standard preparation obtained in combination of multi-wavelength fusion fingerprinting and hierarchical clustering analysis, averagely linear quantified fingerprint method could rapidly calculate the composition similarities and efficiently quantify the multiple components of CLTs without any chemical standard. Furthermore, the fingerprint-efficacy relationship was investigated by integrating high performance liquid chromatography fingerprints with antioxidant activity assessment using the partial least squares model, which was capable of directly discovering the bioactive ingredients. Hereafter, combination index value was introduced to evaluate the correlation between the two antioxidant herbs in CLT formula.
The results showed that CLT samples were effectively identified and quantified, and their quality was accurately distinguished. By analyzing the antioxidant evaluation results, it was found that CLT had strong antioxidant activity, and through the study on PLS model and antioxidant activity assay of individual compounds, it was found that the order of chemical constituents responsible for antioxidant activity in CLT was as follows: flavonoids > saponins > alkaloids. Finally, it was determined that the CI value of GE-PPCE was in the range of 1.20-1.61, indicating that the interaction of the GE-PPCE pair was a slight antagonism.
Thus, this study provided a preferred way for monitoring the quality consistency of HM, exploring possible bioactive components of HMs and assessing the interaction between herbs.
草药(HM)作为一个复杂的系统,通过单一检测方法获得的色谱指纹图谱难以有效研究其质量一致性。此外,活性化合物的发现直到发现过程的后期才提供关于药理活性的信息,并且体外草药之间的相互作用尚不清楚,这需要足够的实践来证明其有效性。
因此,本研究的目的是使用多波长融合指纹图谱改进复方甘草片(CLT)的质量控制方法,探索可能的抗氧化成分,并评估草药结合生物活性评价的相互作用。
一旦结合多波长融合指纹图谱和层次聚类分析获得理论标准制剂,均方根线性定量指纹图谱法可以快速计算成分相似度,并在没有任何化学标准的情况下有效地定量 CLT 的多种成分。此外,通过将高效液相色谱指纹图谱与抗氧化活性评估相结合,利用偏最小二乘模型研究指纹-功效关系,直接发现生物活性成分。此后,引入组合指数值来评估 CLT 配方中两种抗氧化草药之间的相关性。
结果表明,CLT 样品得到了有效识别和定量,其质量得到了准确区分。通过分析抗氧化评价结果,发现 CLT 具有很强的抗氧化活性,通过对 PLS 模型和单个化合物抗氧化活性的研究,发现 CLT 中抗氧化活性的化学组成顺序如下:黄酮类化合物>皂苷类化合物>生物碱类化合物。最后,确定 GE-PPCE 的 CI 值在 1.20-1.61 范围内,表明 GE-PPCE 对的相互作用是轻微的拮抗作用。
因此,本研究为监测 HM 的质量一致性、探索 HM 可能的生物活性成分以及评估草药之间的相互作用提供了一种首选方法。