Zhang Zhen, Liu Fang, Ma Xiang, Huang Huihua, Wang Yong
School of Food Science and Engineering, South China University of Technology , Guangzhou 510641, China.
Guangdong Saskatchewan Oil Seed Joint Laboratory, Department of Food Science and Engineering, Jinan University , Guangzhou 510632, China.
J Agric Food Chem. 2018 Jan 10;66(1):218-227. doi: 10.1021/acs.jafc.7b04101. Epub 2017 Dec 20.
Fish oil products in the form of triacylglycerols generally have relatively low contents of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) and so it is of potential research and industrial interest to enrich the related contents in commercial products. Thereby an economical and efficient two-stage preparation of EPA and DHA enriched fish oil triacylglycerols is proposed in this study. The first stage was the partial hydrolysis of fish oil by only 0.2 wt.‰ AY "Amano" 400SD which led to increases of EPA and DHA contents in acylglycerols from 19.30 and 13.09 wt % to 25.95 and 22.06 wt %, respectively. Subsequently, products of the first stage were subjected to transesterification with EPA and DHA enriched fatty acid ethyl esters (EDEE) as the second stage to afford EPA and DHA enriched fish oil triacylglycerols by using as low as 2 wt % Novozyme 435. EDEEs prepared from fish oil ethyl ester, and recycled DHA and EPA, respectively, were applied in this stage. Final products prepared with two different sources of EDEEs were composed of 97.62 and 95.92 wt % of triacylglycerols, respectively, with EPA and DHA contents of 28.20 and 21.41 wt % for the former and 25.61 and 17.40 wt % for the latter. Results not only demonstrate this two-stage process's capability and industrial value for enriching EPA and DHA in fish oil products, but also offer new opportunities for the development of fortified fish oil products.
以三酰甘油形式存在的鱼油产品中二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)的含量通常较低,因此提高商业产品中相关成分的含量具有潜在的研究和工业价值。据此,本研究提出了一种经济高效的两阶段制备富含EPA和DHA的鱼油三酰甘油的方法。第一阶段是仅用0.2 wt.‰的“天野”AY 400SD对鱼油进行部分水解,这使得酰基甘油中EPA和DHA的含量分别从19.30 wt%和13.09 wt%增加到25.95 wt%和22.06 wt%。随后,将第一阶段的产物与富含EPA和DHA的脂肪酸乙酯(EDEE)进行酯交换作为第二阶段,通过使用低至2 wt%的诺维信435来制备富含EPA和DHA的鱼油三酰甘油。由鱼油乙酯以及分别回收的DHA和EPA制备的EDEE用于该阶段。用两种不同来源的EDEE制备的最终产品分别由97.62 wt%和95.92 wt%的三酰甘油组成,前者的EPA和DHA含量分别为28.20 wt%和21.41 wt%,后者为25.61 wt%和17.40 wt%。结果不仅证明了这种两阶段工艺在富集鱼油产品中EPA和DHA方面的能力和工业价值,也为强化鱼油产品的开发提供了新机遇。