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首页> 外文期刊>Journal of the American Oil Chemists' Society >Screening catalytic lipase activities with an analytical supercritical fluid extractor
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Screening catalytic lipase activities with an analytical supercritical fluid extractor

机译:使用分析型超临界流体萃取器筛选催化脂肪酶活性

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摘要

Two different screenings of several commercial lipases were performed to find a lipase with superior performance for the conversion of lipid moieties to their fatty acid methyl ester (FAME) derivatives under supercritical conditions. The first screening was done under hydrolytic conditions in a buffer. The second screening was done under supercritical conditions with CO2, utilizing some of the same lipases for the methanolysis of different lipids. For the substrates studied, there was a significant difference in lipase activity under the two above conditions. Significant hydrolytic activity was demonstrated for three different lipid types (triglycerides, sterols, and phospholipids) with Lipase PS30, but when the same lipase was immobilized on an Accurel carrier (polypropylene), the activity decreased considerably. The opposite was found for Lipase G, which showed strong activity when immobilized and under supercritical conditions. Furthermore, Chirozyme L-l was superior under supercritical conditions. The altered substrate specificity that some of these lipases show in supercritical CO2 suggests several interesting synthetic options and applications under these conditions. [References: 15]
机译:进行了几种商品化脂肪酶的两次不同筛选,以发现一种在超临界条件下具有出色性能的脂酶,可将脂质部分转化为其脂肪酸甲酯(FAME)衍生物。第一次筛选是在水解条件下在缓冲液中进行的。第二次筛选是在超临界条件下用二氧化碳进行的,利用一些相同的脂肪酶进行不同脂质的甲醇分解。对于所研究的底物,在上述两个条件下脂肪酶活性存在显着差异。脂肪酶PS30对三种不同的脂质类型(甘油三酸酯,固醇和磷脂)显示出显着的水解活性,但是当相同的脂肪酶固定在Accurel载体(聚丙烯)上时,活性会大大降低。脂肪酶G发现相反的情况,脂肪酶G在固定和超临界条件下表现出强活性。此外,手性酶L-1在超临界条件下是优越的。这些脂肪酶中的某些在超临界CO2中显示的底物特异性改变表明在这些条件下有几种有趣的合成选择和应用。 [参考:15]

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