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首页> 外文期刊>Journal of mass spectrometry: JMS >N-alkylpyridinium quaternization for assisting electrospray ionization of sterols in oil by quadrupole-time of flight mass spectrometry
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N-alkylpyridinium quaternization for assisting electrospray ionization of sterols in oil by quadrupole-time of flight mass spectrometry

机译:N-烷基吡啶季铵化通过四极杆飞行时间质谱法辅助油中固醇的电喷雾电离

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Rationale: The illegal cooking oil has become a serious social problem and raised widespread alarm recently. However, an efficient and sensitive technique for identifying the potential illegal cooking oil is still unavailable, especially when mixed with the ordinary ones; there is an urgent need to develop an efficient method for identifying the illegal cooking oil. Sterols in the cooking oil could be used as an indicator to identify the source and quality of oil by detecting the kinds of phytosterols and zoosterols. However, those sterols are difficult to be ionized by electrospray ionization, which resulted in the low sensitivity in electrospray ionization (ESI)-mass spectrometric (MS) analysis. Methods: N-alkylpyridinium isotope quaternization was extended to charge label sterols in different cooking oil and attached N-cationic pyridinium tag onto the sterols in the presence of trifluoromethanesulfonic anhydride (Tf2O); the kinds of sterols were identified and quantified by comparing d0/d5 pairs and product scan from ESI-quadrupole-time of flight (Q-TOF) MS analysis. Results: The derivatized sterols were attached with permanent charge, resulting in the significant enhancement of ionization in ESI-Q-TOF MS analysis. The detection limits of analytes were improved to 0.02-0.05 ng/mL; different kinds of phytosterol, zoosterol and oxides were identified and quantified by comparing d 0/d5 pairs from full scan and product scan. The method was applied in the detection of zoosterol for identifying the potential recycled cooking oil, even when the illegal oil has been blended into the ordinary one. More zoosterol was detected in the recycled oil compared with other cooking oil. Conclusions: The use of N-alkylpyridinium isotope quaternization method provided an alternative method for identifying the potential illegal cooking oil.
机译:理由:非法食用油已成为一个严重的社会问题,最近引起了广泛的警觉。但是,仍然没有一种有效和敏感的技术来识别潜在的非法食用油,特别是与普通食用油混合使用时;迫切需要开发一种识别非法食用油的有效方法。通过检测植物甾醇和动物甾醇的种类,食用油中的甾醇可以用作鉴定油脂来源和质量的指标。但是,这些固醇很难通过电喷雾电离而电离,这导致电喷雾电离(ESI)-质谱(MS)分析的灵敏度较低。方法:在三氟甲磺酸酐(Tf2O)存在下,将N-烷基吡啶鎓同位素季铵化作用扩展至不同食用油中的标记固醇,然后将N-阳离子吡啶鎓标签附着到固醇上。通过比较d0 / d5对和从ESI-四极杆飞行时间(Q-TOF)MS分析得到的产物扫描,可以鉴定和定量各种固醇。结果:衍生的固醇带有永久电荷,从而在ESI-Q-TOF MS分析中显着增强了电离作用。分析物的检出限提高到0.02-0.05 ng / mL;通过比较全扫描和产物扫描中的d 0 / d5对,鉴定并定量了不同种类的植物甾醇,动物甾醇和氧化物。该方法被用于检测动物甾醇,以识别潜在的回收食用油,即使将非法油混入普通油中也是如此。与其他食用油相比,在再生油中检测到更多的动物甾醇。结论:使用N-烷基吡啶鎓同位素季铵化方法为识别潜在的非法食用油提供了另一种方法。

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