Determination of vitamin D in foods: a review.

D B Parrish
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引用次数: 33

Abstract

Determining vitamin D content in foods is difficult because in natural foods of highest vitamin D activity, and even in vitamin D-fortified foods, only small quantities are present, and many other compounds are extracted along with vitamin D that cause difficulties in purifying the extract or in the spectrophotometry or colorimetry that follows. Several physicochemical methods--such as spectrophotometric, colorimetric, thin-layer chromatographic, adsorption, partition, gas-liquid, and high-performance column chromatographic--have been tried for assay foods for vitamin D, but none of them have been accepted for official or routine use; they are time consuming and expensive, or lack the required sensitivity, precision, or accuracy. Curative biological assays, based on degree of healing of a leg bone of rats previously made rachitic, is the generally accepted method to determine vitamin D content of foods. However, that method also requires too much time and is expensive. The recently developed high-performance liquid chromatographic method may offer the most for establishing a satisfactory physicochemical method for determining vitamin D in foods. Many of the difficulties and problems in assaying foods for vitamin D are discussed.

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食品中维生素D的测定方法综述。
确定食品中的维生素D含量是很困难的,因为在维生素D活性最高的天然食品中,甚至在维生素D强化食品中,只有少量存在,而且许多其他化合物与维生素D一起被提取出来,这在纯化提取物或随后的分光光度法或比色法中造成了困难。几种物理化学方法,如分光光度法、比色法、薄层色谱法、吸附法、分馏法、气液法和高效柱色谱法,已被用于测定食品中的维生素D,但没有一种被正式或常规使用;它们既耗时又昂贵,或者缺乏所需的灵敏度、精度或准确性。治疗性生物试验是一种普遍接受的测定食物中维生素D含量的方法,这种方法是根据先前制成佝偻病的大鼠腿骨的愈合程度进行的。然而,这种方法也需要太多的时间和昂贵的。近年来建立的高效液相色谱法可为食品中维生素D的测定提供满意的理化方法。讨论了食品中维生素D含量测定的困难和问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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