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Analysis of flavonoids with unified chromatography-electrospray ionization mass spectrometry-method development and application to compounds of pharmaceutical and cosmetic interest

机译:用统一色谱 - 电喷雾电离质谱法分析黄酮类化合物的发育和应用于药物和化妆品的化合物

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In this project, we aimed at analysing flavonoid-type compounds with unified chromatography (joining supercritical fluid chromatography and enhanced fluidity liquid chromatography with carbon dioxide-methanol mobile phases covering a wide range of compositions) and diode-array and electrospray ionization mass spectrometric detection (UC-DAD-ESI-MS). First, the chromatographic method was developed for 9 standard flavonoid molecules from three different families (flavanols, flavanones and flavonols, glycosylated or not), with a strong focus on mobile phase composition to achieve the elution of a wide range of flavonoids with good chromatographic quality (efficiency and resolution). For this purpose, two stationary phases were selected (ACQUITY UPC2 DEA and Diol), and five different additives (formic acid, citric acid, phosphoric acid, methanesulfonic acid and ammonium hydroxide) were successively introduced in the methanol co-solvent. The composition containing 0.1% methanesulfonic acid in methanol was retained as it provided the best chromatographic quality together with the possibility of hyphenating the chromatography to mass spectrometry. The DEA column appeared to provide the best efficiency and was retained for firrther method development. The gradient method was then optimized to achieve a fast analysis, which involved elution with a wide range of mobile phase composition (from 20 to 100% co-solvent in methanol) together with reversed flow rate and reversed pressure gradients at fixed temperature. The final gradient lasted 10 min, followed by 2.5 min of re-equilibration. Then, ESI-MS detection was optimized. Because the single-quadrupole mass spectrometer employed (ACQUITY UPC2 QDa) allowed the variation of only a few parameters, a design of experiments was used to define the best compromise for three parameters (probe temperature, cone voltage and capillary voltage). The make-up fluid introduced before entering the MS was also varied: different compositions of methanol-water containing either formic acid, ammonium hydroxide or sodium chloride were tested. The best results in terms of signal-to-noise ratio were obtained with methanol containing 20 mM ammonium hydroxide and 2% water. The optimal UC-DAD-ESI-MS method was then applied to two different flavonoid formulation ingredients. The first one, hidrosmin (5-O-(beta-hydroxyethyl)diosmin), is known for its vasoprotective properties and therefore employed in pharmaceutical formulations. The second one, alpha-glucosyl-hesperidin (sometimes referred to as vitamin P), is employed in cosmetic formulations. Identification of the major compounds in each sample was achieved with the help of MS detection.
机译:在该项目中,我们旨在分析具有统一色谱法的黄酮类化合物(将超临界流体色谱和增强的流动性液相色谱,覆盖各种组合物的二氧化碳 - 甲醇移动相)和二极管阵列和电喷雾电离质谱检测( UC-DAD-ESI-MS)。首先,从三种不同的家族(黄黄烷醇,黄酮和黄酮酚,糖基化或不)开发了3种标准黄酮分子的色谱法,强调了流动相组合物,以实现各种具有良好色谱质量的类黄酮类化合物的洗脱(效率和分辨率)。为此目的,在甲醇共溶剂中,在甲醇共溶剂中,选择了两种固定相(Acquity UPC2 DEA和二醇),以及五种不同的添加剂(甲酸,柠檬酸,磷酸,甲磺酸和氢氧化铵)。保留含有0.1%甲醇磺酸的组合物,因为它提供了最佳的色谱质量,以及将色谱法与质谱法连字符。 DEA柱似乎提供了最佳效率,并保留用于Firrther方法的开发。然后优化梯度方法以实现快速分析,其涉及用多种流动相组合物(在甲醇中的20至100%共溶剂中)以及固定温度的反向流速和反向压力梯度的摘录。最终梯度持续10分钟,然后再平衡2.5分钟。然后,优化ESI-MS检测。因为所用的单四极杆质谱仪(Acquity UPC2 QDA)允许仅少数参数的变化,所以使用实验的设计来定义三个参数的最佳折衷(探针温度,锥电压和毛细管电压)。在进入MS之前引入的化妆液也变化:测试含有甲酸,氢氧化铵或氯化钠的不同组成。用含有20mM氢氧化铵和2%水的甲醇获得信噪比的最佳结果。然后将最佳的UC-DAD-ESI-MS方法应用于两种不同的类黄酮制剂成分。第一个Hidrosmin(5-O-(β-羟乙基)二孢子)以其血管保护性特性已知并因此在药物制剂中使用。在化妆品制剂中使用第二个,α-葡萄糖基-Husperidin(有时称为维生素P)。在MS检测的帮助下,实现了每个样品中的主要化合物的鉴定。

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