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Quantification of four Isoflavones in Forages with UPLC®-MS/MS, using the Box-Behnken Experimental Design to Optimize Sample Preparation

机译:使用Box-Behnken实验设计优化样品制备的UPLC®-MS/ MS对饲料中的四种异黄酮进行定量

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摘要

A performant method for the simultaneous quantification of daidzein, genistein, formononetin and biochanin A in forages using an UPLC®-MS/MS was developed and fully validated. The ultrasound-assisted extraction and enzymatic hydrolysis used in the sample preparation step were optimized using the Box-Behnken experimental design. The optimal extraction conditions used for a representative mix of forage plants were 80°C, 10 min and 55% methanol, and for hydrolysis they were 20°C, 18 h and pH=6. The chromatographic separation was achieved using an Acquity® UPLC® HSS T3 column, with a water/methanol linear gradient containing 0.01% of formic acid at a 0.55 mL min-1 flow rate. The four isoflavones were detected by ESI mass spectrometry in positive ion MRM mode. The method allows high throughput analyses of samples and showed an adequate linear regression model for all isoflavones over a range from 5 to 125 ng mL-1. There was good intra- and inter-day precision (≤ 8.2% and ≤ 7.6%) and accuracy (≤ 11.4% and ≤ 7.1%). The recovery rates were in an acceptable range of 70-120%, except for biochanin A, where the rate was about 50%. Good method repeatability was also observed, and there was no matrix effect or carry-over problem. The sample extracts were stable for at least 6 days of storage at -21°C and 6°C. The method proved to be sensitive, precise and accurate for discriminating a wide variety of forages likely to be grazed by ruminants according to their isoflavone content and to observe the impact storage process on isoflavone content in forages.
机译:开发了一种高效方法,使用UPLC®-MS/ MS同时定量饲草中的大豆苷元,染料木黄酮,formononetin和biochaninA。使用Box-Behnken实验设计优化了样品制备步骤中使用的超声辅助提取和酶促水解。用于代表性草料植物混合物的最佳提取条件是80°C,10分钟和55%的甲醇,水解条件是20°C,18 h和pH = 6。使用Acquity®UPLC®HSS T3色谱柱,以0.55 mL min-1的流速包含0.01%甲酸的水/甲醇线性梯度色谱柱进行色谱分离。通过ESI质谱法在正离子MRM模式下检测到四种异黄酮。该方法可以对样品进行高通量分析,并显示了适用于5至125 ng mL-1范围内所有异黄酮的线性回归模型。日间和日间精度(≤8.2%和≤7.6%)和精度(≤11.4%和≤7.1%)具有良好的日间精度。除了生物chanin A的回收率约为50%外,回收率在70-120%的可接受范围内。还观察到了良好的方法重复性,并且没有基质效应或残留问题。样品提取物在-21°C和6°C下至少可稳定保存6天。该方法被证明是灵敏,准确和准确的,可以根据反刍动物的异黄酮含量区分出各种可能被反刍动物吃草的饲料,并观察其对饲料中异黄酮含量的影响。

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