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Microwave-assisted acid digestion protocol for the determination of methionine and selenomethionine in selenium-enriched yeast by species specific isotope dilution GC-MS

机译:物种特异性同位素稀释GC-MS测定微波辅助酸消解方法测定富硒酵母中的蛋氨酸和硒代蛋氨酸

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A quantitative and fast microwave assisted protein digestion method is described for the simultaneous determination of methionine (Met) and selenomethionine (SeMet) in yeast. Extraction of Met and SeMet from the selenized yeast was performed in a focused microwave system using methanesulfonic acid (MSA). The effects of parameters such as extraction time, temperature, power and sample mass on the extraction efficiencies of Met and SeMet were investigated. Species specific isotope dilution (ID) calibration using 13C enriched Met and SeMet spikes was employed to obtain accurate results. Analytes were derivatized with methyl chloroformate and extracted into chloroform prior to species specific ID GC-MS analysis. Using a 20 minute extraction time at 165 ?°C and 6 ml of 4 M MSA was found to be efficient for both analytes based on a 50 mg sample mass. Under these conditions, concentrations of 5862 ?± 32 and 3366 ?± 60 ??g ga?’1 (one standard deviation, n = 3) for Met and SeMet, respectively, were obtained in SELM-1 yeast certified reference material (CRM). The obtained results are in good agreement with the certified values of 5758 ?± 277 and 3448 ?± 146 ??g ga?’1 (expanded uncertainty, k = 2). Compared to previous MSA reflux digestion, this newly proposed method offers dramatic reduction in extraction time from 8a€“16 hours of the conventional MSA reflux to 20 minutes by microwave extraction, significantly improving the sample throughput. Additionally, the microwave extraction is fully automated and uses 75% less reagent (MSA) than the conventional acid reflux setup. The developed method is suitable for quasi real time production monitoring of Met and SeMet in Se enriched yeast and other food products.
机译:描述了定量和快速微波辅助蛋白质消化方法,用于同时测定酵母中的蛋氨酸(Met)和硒代蛋氨酸(SeMet)。在聚焦微波系统中,使用甲磺酸(MSA)从硒化酵母中提取Met和SeMet。研究了萃取时间,温度,功率和样品质量等参数对Met和SeMet萃取效率的影响。使用富含13C的Met和SeMet尖峰进行物种特异性同位素稀释(ID)校准,以获得准确的结果。在进行物种特异性ID GC-MS分析之前,将分析物用氯甲酸甲酯衍生化并萃取到氯仿中。在165°C下使用20分钟的萃取时间,发现基于50 mg样品质量,6 ml的4 M MSA对两种分析物均有效。在这些条件下,在SELM-1酵母认证的参考材料(CRM)中获得的Met和SeMet的浓度分别为5862±32和3366±60μg ga -1(一个标准偏差,n = 3)。 )。获得的结果与5758?±277和3448?±146?g ga?'1的认证值(扩展不确定度,k = 2)非常吻合。与以前的MSA回流消解相比,这种新提出的方法可将提取时间从传统MSA回流的8至16小时大幅减少到微波提取的20分钟,从而显着提高了样品通量。此外,微波萃取是全自动的,比传统的酸回流装置少使用75%的试剂(MSA)。该方法适用于富硒酵母及其他食品中Met和SeMet的准实时生产监测。

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