Liu Zeqing, Dai Lingmei, Liu Dehua, Du Wei
Key Laboratory for Industrial Biocatalysis, Ministry of Education, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.
Tsinghua Innovation Center in Dongguan, Dongguan, 523808, Guangdong, China.
Biotechnol Biofuels Bioprod. 2022 Nov 4;15(1):118. doi: 10.1186/s13068-022-02217-8.
Human milk fat substitutes (HMFS) with triacylglycerol profiles highly similar to those of human milk fat (HMF) play a crucial role in ensuring the supply in infant nutrition. The synthesis of HMFS as the source of lipids in infant formula has been drawing increasing interest in recent years, since the rate of breastfeeding is getting lower. Due to the mild reaction conditions and the exceptionally high selectivity of enzymes, lipase-mediated HMFS preparation is preferred over chemical catalysis especially for the production of lipids with desired nutritional and functional properties. In this article, recent researches regarding enzymatic production of HMFS are reviewed and specific attention is paid to different enzymatic synthetic route, such as one-step strategy, two-step catalysis and multi-step processes. The key factors influencing enzymatic preparation of HMFS including the specificities of lipase, acyl migration as well as solvent and water activity are presented. This review also highlights the challenges and opportunities for further development of HMFS through enzyme-mediated acylation reactions.
甘油三酯谱与母乳脂肪(HMF)高度相似的母乳脂肪替代品(HMFS)在确保婴儿营养供应方面发挥着关键作用。近年来,随着母乳喂养率的下降,作为婴儿配方奶粉脂质来源的HMFS的合成越来越受到关注。由于酶反应条件温和且选择性极高,与化学催化相比,脂肪酶介导的HMFS制备更受青睐,特别是用于生产具有所需营养和功能特性的脂质。本文综述了近年来关于HMFS酶法生产的研究,并特别关注了不同的酶促合成路线,如一步法、两步催化和多步工艺。介绍了影响HMFS酶法制备的关键因素,包括脂肪酶的特异性、酰基迁移以及溶剂和水活度。本综述还强调了通过酶介导的酰化反应进一步开发HMFS所面临的挑战和机遇。