首页> 外文期刊>Journal of Agricultural and Food Chemistry >Identification of Tocopherols, Tocotrienols, and Their Fatty Acid Esters in Residues and Distillates of Structured Lipids Purified by Short-Path Distillation
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Identification of Tocopherols, Tocotrienols, and Their Fatty Acid Esters in Residues and Distillates of Structured Lipids Purified by Short-Path Distillation

机译:短程蒸馏纯化的结构脂质残渣和馏出物中的生育酚,生育三烯酚及其脂肪酸酯的鉴定

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摘要

The fate of endogenous vitamin E isomers during production and purification of structured lipids (SLs) was investigated. Two SLs involving tripalmitin, stearidonic acid soybean oil, and docosahexaenoic acid were synthesized by transesterification catalyzed by Novozym 435 (NSL) and acidolysis by Lipozyme TL IM (LDHA) and purified by short-path distillation (SPD). The electron impact and chemical ionization mass spectra of tocbpheryl and tocotrienyl fatty acid esters in the distillates measured by GC-MS in synchronous scan/SIM mode demonstrated that these esters were formed during acidolysis as well as transesterification. The predominant esters were tocopheryl palmitate, tocopheryl oleate, and tocopherol linoleate homologues, and no tocopheryl or tocotrienyl linolenate, stearidonate, or docosahexaenoate was found. Meanwhile, none of these esters were detected in the residues for either NSL or LDHA. Less than 50% of vitamin E isomers were present in residues after SPD. This loss played a major role in the rapid oxidative deterioration of SLs from previous studies with less contribution from the formation of tocopheryl and tocotrienyl esters. The lost tocopherols and tocotrienols present at high concentration in the distillates may be recovered and used to improve the oxidative stability of SLs.
机译:研究了内源性维生素E异构体在结构化脂质(SLs)的生产和纯化过程中的命运。通过Novozym 435(NSL)催化的酯交换反应和Lipozyme TL IM(LDHA)的酸解反应,合成了两种涉及三棕榈精,硬脂酸大豆油和二十二碳六烯酸的SL,并通过短程蒸馏(SPD)纯化。通过GC-MS在同步扫描/ SIM模式下测量的馏出物中的生育酚和生育三烯基脂肪酸酯的电子轰击和化学电离质谱表明,这些酯是在酸解和酯交换反应过程中形成的。主要的酯是生育酚棕榈酸酯,生育酚油酸酯和生育酚亚油酸酯同系物,未发现生育酚或生育三烯酸亚油酸酯,十八碳酸酯或二十二碳六烯酸酯。同时,在NSL或LDHA的残基中均未检测到这些酯。 SPD后残留物中的维生素E异构体少于50%。这种损失在先前研究中对SL的快速氧化降解起了主要作用,而生育酚基和生育三烯基酯的形成的贡献则较小。可以回收馏出物中高浓度存在的丢失的生育酚和生育三烯酚,并将其用于改善SL的氧化稳定性。

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