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海洋和淡水鱼样本中不皂化物的高效液相色谱法:视黄醇(维生素A1)和脱氢视黄醇(维生素A2)异构体的分离与鉴定

High-performance liquid chromatography of the unsaponifiable from samples of marine and freshwater fish: fractionation and identification of retinol (vitamin A1) and dehydroretinol (vitamin A2) isomers.

作者信息

Stancher B, Zonta F

出版信息

J Chromatogr. 1984 Apr 6;287(2):353-64. doi: 10.1016/s0021-9673(01)87711-6.

Abstract

Retinol (vitamin A1) and dehydroretinol (vitamin A2) geometric isomers, obtained in photosynthetic mixtures or from natural samples, were simultaneously fractionated by means of isocratic normal phase high-performance liquid chromatography. The use of low percentages of isopropanol (0.4-1.1%) as a modifier in hexane was studied, and the resolution of both pairs of retinols (9-cis/all-trans and 13-cis/11-cis) whose baseline separation had not previously been achieved was obtained. The proposed chromatographic method therefore allows the complete separation of all six of the most commonly occurring retinols in natural samples, including the above four mono cis- retinols plus the two 9,13- and 11,13-di-cis- retinols . Photoisomerization of retinal and of retinol in different solvent systems and during the extraction process was also studied, before analyzing the unsaponifiable from fresh and marine water fish, which constitute rich natural sources of both vitamins A1 and A2. Vitamin A2 was found to be present in different relative percentages depending on the analytical matrix. Four cis isomers (9-cis-, 11-cis-, 13-cis- and 9,13-di-cis-retinol or corresponding dehydroretinols ) were found to occur naturally together with the main all-trans form, confirming the need to separate geometric isomers in every dosage of vitamin A-containing compounds.

摘要

通过等度正相高效液相色谱法同时分离光合混合物或天然样品中获得的视黄醇(维生素A1)和脱氢视黄醇(维生素A2)的几何异构体。研究了在己烷中使用低百分比异丙醇(0.4 - 1.1%)作为改性剂的情况,并实现了之前未达到基线分离的两对视黄醇(9 - 顺式/全反式和13 - 顺式/11 - 顺式)的分离。因此,所提出的色谱方法能够完全分离天然样品中最常见的所有六种视黄醇,包括上述四种单顺式视黄醇以及两种9,13 - 和11,13 - 二顺式视黄醇。在分析新鲜海水鱼的不皂化物之前,还研究了视网膜和视黄醇在不同溶剂系统以及提取过程中的光异构化,新鲜海水鱼是维生素A1和A2的丰富天然来源。发现维生素A2的相对含量因分析基质而异。发现四种顺式异构体(9 - 顺式、11 - 顺式、13 - 顺式和9,13 - 二顺式视黄醇或相应脱氢视黄醇)与主要的全反式形式同时天然存在,这证实了在每种含维生素A化合物的剂量中都需要分离几何异构体。

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