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首页> 外文期刊>Journal of the American Oil Chemists' Society >Lipase-Catalyzed Synthesis of Fatty Acid Pyridylcarbinol Ester for the Analysis of Seed Lipids
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Lipase-Catalyzed Synthesis of Fatty Acid Pyridylcarbinol Ester for the Analysis of Seed Lipids

机译:脂肪酶催化合成脂肪酸吡啶甲醇酯用于种子脂质的分析

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摘要

Numerous derivatives of fatty acids (FA), including esters of methanol/3-hydroxymethylpyridine or dimethyloxazoline, are used for the analysis of FAs in biological specimens. Picolinyl derivatives are frequently prepared for structural determination by gas chromatography-mass spectrometry (GC-MS) since they provide characteristic fragments. The ester can be prepared by chemical methods-multistep methodologies or basic transesterification. Microbial lipases catalyze a number of transesterification reactions, and their catalytic activities are often stable at extreme conditions. Although these characteristic features may be useful in the application of typical FA structure analysis by picolinyl ester, detailed studies have not been reported. To address the problems, a simple and quantitative methodology for the synthesis of picolinyl esters from lipids has been developed. It involves the transesterification with Novozym 435 (Novozymes Biopharma US Inc., Franklinton, USA), resin-immobilized lipase from Candida antartica in toluene. Mild reaction conditions allow for complete derivatization of perilla seed oil in 30 min at 50 A degrees C. The procedure was further studied with various TAGs and fatty wax from 17 plants. The optimized procedure was as follows; 1 mg lipid and 20 mg catalyst in 2 mL toluene at 50 A degrees C for 1 h. Quantitative analysis of marker FAs was performed with the proposed method. The results coincided well with those from potassium t-butoxide-catalyzed reaction. The optimized method, however, was not applicable for the determination of some epoxy FAs, fatty wax, and parinaric acid.
机译:脂肪酸(FA)的许多衍生物,包括甲醇/ 3-羟甲基吡啶或二甲基恶唑啉的酯,都用于分析生物样品中的FA。吡啶甲酸衍生物经常制备用于通过气相色谱-质谱(GC-MS)进行结构测定,因为它们提供特征性片段。该酯可以通过化学方法-多步方法或碱性酯交换反应来制备。微生物脂肪酶催化许多酯交换反应,其催化活性在极端条件下通常是稳定的。尽管这些特征对于通过吡啶甲酸酯进行的典型FA结构分析的应用可能有用,但尚未报告详细的研究。为了解决这些问题,已经开发了一种从脂质合成吡啶啉酯的简单而定量的方法。它涉及与Novozym 435(Novozymes Biopharma US Inc.,美国Franklinton,美国)进行酯交换反应,该树脂固定了来自念珠菌的树脂固定的脂肪酶在甲苯中的活性。温和的反应条件可使紫苏种子油在50 A的温度下在30分钟内完全衍生化。用来自17种植物的各种TAG和脂肪蜡进一步研究了该方法。优化程序如下:在50 A摄氏度的1 mL脂质和20 mg催化剂在2 mL甲苯中的溶液中放置1 h。用提出的方法进行标记FA的定量分析。结果与叔丁醇钾催化反应的结果吻合。但是,优化方法不适用于某些环氧FA,脂肪蜡和派瑞纳酸的测定。

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