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采用 UPLC-MS/MS 同时测定生、炭制茜草根及根茎中 12 种醌类成分,并考察其对斑马鱼的抗血栓作用。

Simultaneous determination of twelve quinones from Rubiae radix et Rhizoma before and after carbonization processing by UPLC-MS/MS and their antithrombotic effect on zebrafish.

机构信息

Nanjing University of Chinese Medicine Hanlin College, Jiangsu Key Laboratory for High Technology Research of TCM Formulae, National and Local Collaborative Engineering Center of Chinese Medicinal Resources Industrialization and Formulae Innovative Medicine and Jiangsu Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, Nanjing University of Chinese Medicine, Nanjing, 210023, China.

Taizhou Institute for Drug Control, Taizhou 225300, China.

出版信息

J Pharm Biomed Anal. 2020 Nov 30;191:113638. doi: 10.1016/j.jpba.2020.113638. Epub 2020 Sep 17.

Abstract

Rubiae Radix et Rhizoma (called "Qiancao", QC), the root and rhizome of Rubia cordifolia L., has been widely used in clinical practice for its excellent performance in removing blood stasis and haemostasis. However, after carbonization processing, significant changes occurred in chemical components of the charcoal of Rubiae Radix et Rhizoma (called "Qiancaotan", QCT), which enhanced the performance in haemostasis and weakened the performance in removing blood stasis in clinic. In order to study the material basis of function variation during processing, a rapid, reliable, accurate and validated UPLC-MS/MS approach was established to determine twelve quinones in QC and QCT simultaneously. Meanwhile, the antithrombotic effect of target components on zebrafish thrombus model induced by phenylhydrazine (PHZ) was investigated. Chromatographic separation was accomplished on an ACQUITY UPLC Ccolumn with acetonitrile-water containing 0.2 % (v/v) formic acid as mobile phase, at a flow rate of 0.30 mL/min. Quantitation was performed using multiple reaction monitoring (MRM) in positive and negative ion electrospray ionization (ESI). Furthermore, the activity evaluation studies showed that the reduction of removing blood stasis effect of QCT was due to the decrease of dehydro-α-lapachone, lapachol, rubioncolin C and mollugin. This study demonstrated that the method has been successfully applied to determine the content of twelve quinones responsible for the function variation of QCT, and provided a new insight into the material basis and the effect of eliminating stasis before and after processing of QC.

摘要

茜草(又称“茜草”),茜草的根和根茎,因其出色的活血化瘀功效,在临床实践中得到了广泛应用。然而,经过炭化处理后,茜草炭(又称“茜草炭”)的化学成分发生了显著变化,其止血作用增强,活血化瘀作用减弱。为了研究炮制过程中功能变化的物质基础,建立了一种快速、可靠、准确和验证的 UPLC-MS/MS 方法,同时测定 QC 和 QCT 中的 12 种醌类化合物。同时,考察了目标成分对苯肼(PHZ)诱导的斑马鱼血栓模型的抗血栓作用。采用 ACQUITY UPLC C 柱,以含 0.2%(v/v)甲酸的乙腈-水为流动相,流速为 0.30 mL/min,在正、负离子电喷雾电离(ESI)模式下进行多反应监测(MRM)进行色谱分离。此外,活性评价研究表明,QCT 活血化瘀作用降低是由于去氢-α-拉帕酮、拉帕醇、茜草醌 C 和莫诺苷的减少。本研究表明,该方法已成功应用于测定 12 种醌类化合物的含量,这些化合物是 QCT 功能变化的物质基础,并为茜草炮制前后化瘀作用的物质基础和化瘀作用提供了新的认识。

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