Department of Pharmaceutical Analysis, National TCM Key Lab of Serum Pharmacochemistry, Key Lab of Chinmedomics, Heilongjiang University of Chinese Medicine, Harbin, China.
J Sep Sci. 2013 Oct;36(19):3191-9. doi: 10.1002/jssc.201300529. Epub 2013 Aug 28.
Shuanghuanglian formula (SF) is a combination of Flos lonicerae japonicae, Radix scutellariae, and Fructus forsythiae, commonly used to treat viral or bacterial infections. However, the constituents absorbed into the blood after oral administration of SF are difficult to determine and thus remain unclear. Here, we report the application of an accurate background subtraction and multiple data processing approach (Bs-Mpa) for the comprehensive detection of compounds of SF in vivo. A sensitive and reliable ultra-performance LC coupled with ESI quadrupole TOF MS (UPLC-ESI-Q-TOF-MS) approach coupled with Bs-Mpa, which is implemented in the Strip tool from UPLC to remove nonrelated ion signals from accurate mass LC-MS data, was established to characterize the chemical constituents and rat metabolites of SF. In the loading plot of the principal component analysis, 68 ions of interest were extracted from blood samples, among them, 39 absorbed prototype components of SF and 29 metabolites were identified in vivo. It is concluded that the integrative Bs-Mpa method can be successfully applied for the rapid discovery of multiple components from a traditional Chinese medicine. The above challenge was addressed by using the proposed Bs-Mpa method and it was particularly suitable for applying to the global characterization of the constituents or metabolites in rat blood after oral administration of other well-known formulae.
双黄连配方(SF)是金银花、黄芩和连翘的组合,常用于治疗病毒或细菌感染。然而,口服 SF 后被吸收到血液中的成分很难确定,因此仍然不清楚。在这里,我们报告了一种准确的背景扣除和多数据处理方法(Bs-Mpa)在体内综合检测 SF 化合物的应用。一种敏感和可靠的超高效 LC 与 ESI 四极杆飞行时间 MS(UPLC-ESI-Q-TOF-MS)联用,结合 Bs-Mpa,该方法在 UPLC 的 Strip 工具中实现,用于从精确质量 LC-MS 数据中去除无关离子信号,用于表征 SF 的化学成分和大鼠代谢物。在主成分分析的加载图中,从血液样本中提取了 68 个感兴趣的离子,其中鉴定出 39 个 SF 的吸收原型成分和 29 个体内代谢物。结论是,综合 Bs-Mpa 方法可成功应用于从中药中快速发现多种成分。通过使用所提出的 Bs-Mpa 方法解决了上述挑战,它特别适合于应用于口服其他知名配方后大鼠血液中成分或代谢物的全面表征。