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Occurrence of Conjugated Linolenic Acids in Purified Soybean Oil

机译:精制豆油中共轭亚麻酸的存在

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摘要

A high-performance liquid chromatographic (HPLC) method is described for the determination of conjugated linoleic acids (CLA) and conjugated linolenic acids (CLN). Methyl esters prepared from purified lipid fractions of soybean oil were analyzed using an HPLC system equipped with photodiode-array detector to detect peaks having maximum absorption around 233 and 275 nm. These peaks were concentrated by AgNO3-silicic acid column chromatography and reversed-phase HPLC. The structural analysis, of dimethyloxazoline (DMOX) derivatized methyl esters, using gas chromatography–mass spectrometry (GC–MS) showed the occurrence of 9,11- and 10,12-CLA and 8,10,13-, 8,10,12-, and 9,11,13-CLN. The comparison of these conjugated fatty acids with authentic isomers by HPLC revealed the presence of isomeric mixtures of CLA [cis (c),trans(t) or t,c and t,t] and CLN (c,t,t or t,t,c and t,t,t). Traces of 9,11- and 10,12-CLA (c,t or t,c) were found in crude oil. CLN isomers (8,10,12-18:3 and 9,11,13-18:3) were found to be forming during the bleaching phase of soybean oil processing. 8,10,13-CLN and 9,11- and 10,12-CLA (t,t) were only found in soybean oil after the deodorization step. CLN contents in commercial soybean oil varied from 387 to 1,316 mg/kg oil. A decreased level of bleaching earth and temperature resulted in a reduced CLN content. It is possible that CLN would be derived from the linoleate hydroperoxides formed during the processing and storage of soybean oil.
机译:描述了一种高效液相色谱(HPLC)方法,用于测定共轭亚油酸(CLA)和共轭亚麻酸(CLN)。使用配备有光电二极管阵列检测器的HPLC系统分析由大豆油的纯化脂质馏分制得的甲酯,以检测在233和275 nm附近具有最大吸收的峰。通过AgNO 3-硅酸柱色谱和反相HPLC浓缩这些峰。使用气相色谱-质谱(GC-MS)对二甲基恶唑啉(DMOX)衍生的甲基酯进行结构分析,结果表明发生了9,11-和10,12-CLA以及8,10,13-,8,10, 12-和9,11,13-CLN。通过HPLC比较这些共轭脂肪酸与真实异构体,发现存在CLA [顺式(c),反式(t)或t,c和t,t]和CLN(c,t,t或t, t,c和t,t,t)。在原油中发现了痕量的9,11-和10,12-CLA(c,t或t,c)。发现在豆油加工的漂白阶段形成了CLN异构体(8,10,12-18:3和9,11,13-18:3)。仅在脱臭步骤后的豆油中发现了8,10,13-CLN和9,11-和10,12-CLA(t,t)。商业大豆油中的CLN含量在387至1,316 mg / kg油之间。漂白土和温度的降低导致CLN含量降低。 CLN可能源自大豆油加工和储存过程中形成的亚油酸氢过氧化物。

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