Collaborative Innovation Center of Seafood Deep Processing, Zhejiang Province Joint Key Laboratory of Aquatic Products Processing, Institute of Seafood, Zhejiang Gongshang University, Hangzhou 310023, China.
Zhejiang Provincial Institute for Food and Drug Control, Hangzhou 310052, China.
J Agric Food Chem. 2023 May 24;71(20):7937-7946. doi: 10.1021/acs.jafc.3c00505. Epub 2023 May 11.
Comprehensive screening for functional substances from natural resources is always a hot research topic. Eicosapentaenoic acid- (EPA) and docosahexaenoic acid (DHA)-structured phospholipids (PL) have versatile cardiovascular benefits as well as superior bioavailability. Herein, the abundance of PL in 16 aquatic products was specifically and selectively screened using a recently developed precursor ion scan-driven hydrophilic interaction chromatography-mass spectrometry (PreIS-HILIC/MS) method with the fatty acyl moieties of EPA (/ 301.6) and DHA (/ 327.6) locked. The aim focused on the characteristics and differences in the varieties and contents of EPA/DHA-structured phosphatidylcholine (PC) and EPA/DHA-structured phosphatidylethanolamine (PE) molecular species. A total of 80 PL molecules were identified in these natural sources, including 47 PC and 33 PE. After analysis, PC 16:0/20:5 and PC 16:0/22:6 are present in all aquatic products and at high levels. Antarctic krill was found to be the best resource of PL in total (2574.69 μg·g), followed by mackerel (2330.11 μg·g), salmon (2109.91 μg·g), and Farrer's scallop (1883.59 μg·g), while abalone contained the lowest level of PL (310.44 μg·g). Besides, sea cucumber and sea bass contained the highest contents of EPA-structured and DHA-structured ether phospholipids, respectively, which could be highly recommended as dietary sources of special functional phospholipids. Finally, the multiple discrepancies between the 16 aquatic products were revealed by multivariate statistical analysis. These findings improve the awareness of the composition and content of PL contained in aquatic products, providing a reference for their integrated development.
从自然资源中进行功能性物质的综合筛选一直是一个热门的研究课题。二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)结构磷脂(PL)具有多种心血管益处和优越的生物利用度。在此,使用最近开发的带正电荷的离子扫描驱动亲水性相互作用色谱-质谱联用(PreIS-HILIC/MS)方法,以 EPA(/301.6)和 DHA(/327.6)的脂肪酸部分为特征,特异性和选择性地筛选了 16 种水产食品中的 PL 含量。该方法的目的是聚焦于 EPA/DHA 结构磷脂酰胆碱(PC)和 EPA/DHA 结构磷脂酰乙醇胺(PE)分子种类的品种和含量的特征和差异。在这些天然来源中总共鉴定了 80 种 PL 分子,包括 47 种 PC 和 33 种 PE。分析后发现,所有水产食品中均存在 PC 16:0/20:5 和 PC 16:0/22:6,且含量较高。南极磷虾是 PL 总量最高的资源(2574.69μg·g),其次是鲐鱼(2330.11μg·g)、三文鱼(2109.91μg·g)和虾夷扇贝(1883.59μg·g),而鲍鱼的 PL 含量最低(310.44μg·g)。此外,海参和海鲈鱼分别含有最高含量的 EPA 结构和 DHA 结构醚磷脂,可作为特殊功能性磷脂的饮食来源而被大力推荐。最后,通过多元统计分析揭示了这 16 种水产食品之间的多种差异。这些发现提高了对水产食品中 PL 组成和含量的认识,为其综合开发提供了参考。