School of Pharmacy, Shenyang Pharmaceutical University, Shenyang, Liaoning 110016, China.
School of Pharmacy, Shenyang Pharmaceutical University, Shenyang, Liaoning 110016, China.
Phytomedicine. 2022 Sep;104:154274. doi: 10.1016/j.phymed.2022.154274. Epub 2022 Jun 12.
Improving the quality control (QC) criterion of herbal medicine (HM) is an ongoing challenge. A rapid and convenient electrochemical analysis technique is now emerging as a promising application for HM QC. So far, extraction and analysis of the overall electroactive components is a key issue need to be solved to improve its application in integral HM QC.
In this work, using compound liquorice tablets (CLQTs) as an example, we like to put forward a more reliable and accurate quantification method of multi-components for the precise QC of HM. Furthermore, we propose an electrochemical fingerprint-based data mining, extract and synthesis strategy for in-depth and comprehensive QC of HM, qualitatively and quantitatively.
Firstly, the electrochemical quantitative fingerprint of 54 batches of CLQTs from nine manufacturers were developed using B-Z oscillatory system. Secondly, eight characteristic parameters were recorded and compared among samples using intuitive information and PCA. Then, t was used to establish the correlation with sample dosage for determination of the relative content of overall electroactive components (Rc). The quantitative determination of five quality markers (Q-markers) were also performed using the novel method, called multi-markers assay by monolinear method (MAML). Finally, after using area integral calculus for electrochemical fingerprint, average linear quantitative fingerprint method (ALQFM) was successfully proposed to extract all latent characteristics for integral quality evaluation of samples.
The t and dosage showed a good correlation, by which the obtained Rc displayed different fluctuation among nine manufacturers. Moreover, the contents of five Q-markers obtained by MAML displayed no significant difference with the traditional quantification method. Samples evaluated by ALQFM manifested the integral information and were divided into eight quality grades. The deduced results of correlation between P with P, Rc and P were more persuasive for demonstrating the reliability and integrity of ALQFM in quality evaluation of HM electrochemical fingerprint.
The study confirmed the idea that quantification of Q-markers combined electrochemical-based quality evaluation strategy could be used as a reliable method for HM QC qualitatively and quantitatively from point (precise) to face (integral).
提高中药材的质量控制(QC)标准是一个持续存在的挑战。一种快速便捷的电化学分析技术正逐渐成为中药材 QC 的一种有前途的应用。到目前为止,提取和分析整体电活性成分是需要解决的关键问题,以提高其在整体中药材 QC 中的应用。
在这项工作中,以复方甘草片(CLQTs)为例,我们希望提出一种更可靠、更准确的多成分定量方法,用于中药材的精确 QC。此外,我们提出了一种基于电化学指纹的数据挖掘、提取和综合策略,用于深入全面地定性和定量中药材 QC。
首先,使用 B-Z 振荡系统开发了来自 9 个制造商的 54 批 CLQTs 的电化学定量指纹图谱。其次,使用直观信息和 PCA 记录并比较样品中的 8 个特征参数。然后,使用 t 建立与样品剂量的相关性,以确定整体电活性成分(Rc)的相对含量。还使用新方法(单线性方法的多标记测定法,MAML)对五种质量标志物(Q 标志物)进行定量测定。最后,对电化学指纹图谱进行面积积分计算后,成功提出了平均线性定量指纹图谱法(ALQFM),用于提取样品整体质量评价的所有潜在特征。
t 和剂量显示出良好的相关性,由此得出的 Rc 在 9 个制造商之间显示出不同的波动。此外,MAML 得到的五种 Q 标志物的含量与传统定量方法无显著差异。通过 ALQFM 评价的样品显示出整体信息,并分为 8 个质量等级。P 与 P、Rc 和 P 之间的相关系数的推断结果更有说服力,表明 ALQFM 在电化学指纹中药材质量评价中的可靠性和完整性。
该研究证实了这样一种观点,即 Q 标志物的定量与基于电化学的质量评估策略相结合,可作为中药材 QC 的一种可靠方法,可从点(精确)到面(整体)对其进行定性和定量评估。