首页> 外文期刊>Analytical and bioanalytical chemistry >High-speed homogenization coupled with microwave-assisted extraction followed by liquid chromatography-tandem mass spectrometry for the direct determination of alkaloids and flavonoids in fresh Isatis tinctoria L. hairy root cultures
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High-speed homogenization coupled with microwave-assisted extraction followed by liquid chromatography-tandem mass spectrometry for the direct determination of alkaloids and flavonoids in fresh Isatis tinctoria L. hairy root cultures

机译:高速均质化结合微波辅助萃取,然后通过液相色谱-串联质谱法直接测定新鲜板蓝根毛状根培养物中的生物碱和类黄酮

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摘要

A new, simple and efficient analysis method for fresh plant in vitro cultures-namely, high-speed homogenization coupled with microwave-assisted extraction (HSH-MAE) followed by liquid chromatography-tandem mass spectrometry (LC-MS/MS)-was developed for simultaneous determination of six alkaloids and eight flavonoids in Isatis tinctoria hairy root cultures (ITHRCs). Compared with traditional methods, the proposed HSH-MAE offers the advantages of easy manipulation, higher efficiency, energy saving, and reduced waste. Cytohistological studies were conducted to clarify the mechanism of HSH-MAE at cellular/tissue levels. Moreover, the established LC-MS/MS method showed excellent linearity, precision, repeatability, and reproducibility. The HSH-MAE-LC-MS/MS method was also successfully applied for screening high-productivity ITHRCs. Overall, this study opened up a new avenue for the direct determination of secondary metabolic profiles from fresh plant in vitro cultures, which is valuable for improving quality control of plant cell/organ cultures and sheds light on the metabolomic analysis of biological samples.
机译:开发了一种新颖,简单,高效的新鲜植物体外培养分析方法,即高速均质化与微波辅助萃取(HSH-MAE),然后进行液相色谱-串联质谱(LC-MS / MS)用于同时测定板蓝根毛状根培养物(ITHRCs)中的六个生物碱和八个类黄酮。与传统方法相比,提出的HSH-MAE具有操作简便,效率高,节能和减少浪费的优点。进行了细胞组织学研究,以阐明在细胞/组织水平上HSH-MAE的机制。此外,已建立的LC-MS / MS方法具有出色的线性,精密度,可重复性和可重复性。 HSH-MAE-LC-MS / MS方法也已成功地用于筛选高生产率的ITHRC。总的来说,这项研究为直接确定新鲜植物体外培养的次生代谢谱线开辟了一条新途径,这对于改善植物细胞/器官培养物的质量控制具有重要意义,并为生物学样品的代谢组学分析提供了启示。

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