Meyer Daniel, Hörnlein Sophia, Rein Dietrich, Morlock Gertrud E
Institute of Nutritional Science, Chair of Food Science, Justus Liebig University Giessen, Heinrich-Buff-Ring 26-32, 35392, Giessen, Germany.
BASF SE, Carl-Bosch-Str. 38, 67056, Ludwigshafen, Germany.
Anal Bioanal Chem. 2025 May 19. doi: 10.1007/s00216-025-05894-0.
Preschool-aged children and non-pregnant women of reproductive age particularly in countries of a lower socio-demographic index may experience insufficient dietary vitamin A. Fortifying staple foods such as edible oils with vitamin A is a useful approach to reduce malnutrition. To enable better quality oil fortification, producers need reliable and inexpensive tools for assessment of the vitamin A contents of their products. A simple reversed-phase high-performance thin-layer chromatography fluorescence detection (RP-HPTLC-FLD) method was developed and studied for the quantification of vitamin A palmitate (VAP) in five edible plant oils. The challenging matrices of non-refined palm kernel oil and soybean oil, which are known to interfere with the accuracy of some easy-to-use test kits, were separated from VAP using the new RP-HPTLC-FLD method. The standard addition method provided good accuracy and acceptable calibration curves (coefficients of determination R between 0.9874 and 0.9999) even for manual application. The developed RP-HPTLC-FLD method proved simple, robust, sustainable, cost-efficient, and suitable for low-tech (minimum equipment) on-site analysis.
学龄前儿童和育龄非孕妇,特别是在社会人口指数较低国家的这类人群,可能会出现膳食维生素A摄入不足的情况。用维生素A强化食用油等主食是减少营养不良的一种有效方法。为了实现更高质量的油脂强化,生产商需要可靠且廉价的工具来评估其产品中的维生素A含量。开发并研究了一种简单的反相高效薄层色谱荧光检测(RP-HPTLC-FLD)方法,用于定量测定五种食用植物油中的棕榈酸视黄酯(VAP)。使用新的RP-HPTLC-FLD方法,将已知会干扰某些易用检测试剂盒准确性的未精炼棕榈仁油和大豆油等具有挑战性的基质与VAP分离。即使是手动操作,标准加入法也提供了良好的准确度和可接受的校准曲线(测定系数R在0.9874至0.9999之间)。所开发的RP-HPTLC-FLD方法证明是简单、稳健、可持续、经济高效的,并且适用于低技术(最少设备)的现场分析。