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Large Volume Sample Stacking (LVSS) in Capillary Electrophoresis (CE) with Response Surface Methodology (RSM) for the Determination of Phenolics in Food Samples

机译:具有响应面方法(RSM)的大体积样品堆积(LVSS),用于测定食品样品中酚类的酚醛化合物

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A capillary electrophoresis method with large volume sample stacking (CE-LVSS) has been developed and validated for the simultaneous determination of seven phenolic compounds: naringin, rutin, carnosic acid, apigenin, quercetin, morin, and chichoric acid. Optimization was carried out by response surface methodology and a set of 20 experiments helped to optimize the parameters such as the concentration of buffer, buffer pH, and applied voltage. Analytes were separated using a 50 mu m diameter capillary with 56 cm effective length and an extended light path using 20 mM borate buffer at pH 9.2. The LVSS method was optimized and a three- to fivefold improvement in detectability was achieved with injection at 100 mbar for 20 s followed by polarity switching at -20 kV for 6 s. The linearity values of all seven analytes were observed in the concentration ranges from 0.5 to 50 mu g/mL for CE and 0.1 to 25 mu g/mL for LVSS. The limits of detection were from 0.012 to 0.241 and 0.003 to 0.086 mu g/mL for CE and LVSS. The obtained limits of quantitation were within 0.041 to 0.802 for CE and 0.012 to 0.286 mu g/mL for LVSS. The recoveries were between 91.1 and 109.8% and 96.3 and 108.4% for CE and LVSS, respectively. The developed method has been successfully applied for the quantitative determination of analyzed components from food samples that are important sources of these compounds.
机译:已经开发了一种具有大体积样品堆叠(CE-LVS)的毛细管电泳方法,并验证了七种酚类化合物的同时测定:Naringin,芦丁,肉桂酸,Apigenin,槲皮素,Morin和Chichoric acid。通过响应表面方法和一组20实验进行优化,有助于优化缓冲液,缓冲pH和施加电压的参数。使用50μm的直径毛细管分离分析物,其中56cm有效长度和使用20mM硼酸盐缓冲液在pH 9.2处的延伸光路径。优化了LVSS方法,通过在100毫巴的100毫巴中喷射到6秒的极性切换,在100毫巴中注射,达到检测性的三到五倍改善。在浓度的范围内观察到所有7分析物的线性值,对于LVSS,浓度为0.5至50μg/ ml,0.1至25μg/ ml。用于CE和LVS的检测限为0.012至0.241和0.003至0.086μg/ ml。对于LVSS,所获得的定量限率为0.041至0.802和0.012至0.286μg/ ml。 CE和LVSS分别在91.1和109.8%和96.3%和108.4%之间。已经成功地应用了开发方法,用于定量测定来自这些化合物的重要来源的食物样品的分析组分。

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