Wu Yue, Chen Zhen, Jia Jiaping, Chiba Hitoshi, Hui Shu-Ping
Faculty of Health Sciences, Hokkaido University, Kita-12, Nishi-5, Kita-ku, Sapporo 060-0812, Japan.
Department of Nutrition, Sapporo University of Health Sciences, Nakanuma Nishi-4-2-1-15, Higashi, Sapporo 007-0894, Japan.
Foods. 2021 Jan 8;10(1):124. doi: 10.3390/foods10010124.
Plasmalogens are an animal-derived functional phospholipid increasingly known as a safe and effective nutritional ingredient, however, the quantitation and comparison of plasmalogen species in foods is limited. In the present work, determination methods for dietary plasmalogens using liquid chromatography-tandem mass spectroscopy under positive and negative ionization modes were compared. The negative-mode method, which showed better selectivity, sensitivity, and accuracy, was then applied in 14 kinds of livestock, poultry, and seafood samples. Livestock and poultry showed abundant total plasmalogen (530.83-944.94 nmol/g), higher than fish (46.08-399.75 nmol/g) and mollusk (10.00-384.76 nmol/g). While fish and mollusk samples expressed healthier fatty acyl composition, with higher eicosapentaenoyl and more beneficial n-6/n-3 ratio than the land animal meats, especially for squid and octopus, with eicosapentaenoyl of 98.4% and 94.5%, respectively. The correlations among plasmalogen species varied in different foodstuffs with distinguishing patterns, suggesting the customizable strategies for achieving targeted plasmalogen species. These findings not only provided fundamental comparison of plasmalogen among daily foodstuffs, but also contributed to extend the dietary plasmalogen sources for health food development.
缩醛磷脂是一种动物源性功能磷脂,越来越被认为是一种安全有效的营养成分,然而,食品中缩醛磷脂种类的定量和比较却很有限。在本研究中,比较了在正离子和负离子模式下使用液相色谱 - 串联质谱法测定膳食缩醛磷脂的方法。然后将具有更好选择性、灵敏度和准确性的负离子模式方法应用于14种畜禽和海鲜样品。畜禽类的总缩醛磷脂含量丰富(530.83 - 944.94 nmol/g),高于鱼类(46.08 - 399.75 nmol/g)和软体动物(10.00 - 384.76 nmol/g)。虽然鱼类和软体动物样品的脂肪酸酰基组成更健康,二十碳五烯酰基含量更高,n-6/n-3比值比陆地动物肉类更有益,特别是鱿鱼和章鱼,其二十碳五烯酰基含量分别为98.4%和94.5%。不同食品中缩醛磷脂种类之间的相关性呈现出不同的独特模式,这表明可以制定可定制的策略来实现目标缩醛磷脂种类。这些发现不仅提供了日常食品中缩醛磷脂的基础比较,也有助于拓展用于开发健康食品中的膳食缩醛磷脂来源。