聚焦型人乳低聚糖的结构、功能、合成、改进策略及其发展前景

IF 4.8 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Yaya Yang , Shunli Jing , Le Zhang , Jiali Shao , Jixuan Chen , Guohua Xia , Huan Yang , Cunshan Zhou
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引用次数: 0

摘要

人乳寡糖(HMOs)是一种多种乳糖衍生的碳水化合物,是人乳中含量第三高的成分。集中的hmo,尤其丰富,为婴儿提供了显著的好处,并在最近几十年获得了越来越多的兴趣。然而,它们在食品工业和其他部门的广泛应用仍然有限,因为它们的大规模合成和分离面临挑战。本文综述了聚焦型HMOs的化学结构及其生物学功能,评述了传统的和前沿的合成策略,并讨论了该领域的主要挑战和未来前景。尽管取得了进步,但我们对聚焦HMOs的生物活性和功能的了解仍然有限,需要进一步的体外和体内研究。聚焦酶催化的反式聚焦化和代谢工程已成为它们合成的有前途的策略。此外,植物合成为大规模生产提供了可持续的选择。基因修饰、反应条件优化和蛋白质工程技术显著提高了聚焦点HMOs的产量。然而,诸如确定经济底物,获得用于分子工程的酶晶体结构,开发先进的纯化技术以及确保合成产物的安全性等挑战仍然存在。系统评估和整合知识对于推动这一领域的进步至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structure, function, synthesis and improved strategies of fucosylated human milk oligosaccharides and their future perspectives: A review

Structure, function, synthesis and improved strategies of fucosylated human milk oligosaccharides and their future perspectives: A review
Human milk oligosaccharides (HMOs) are a diverse group of lactose-derived carbohydrates and represent the third most abundant component in human milk. Fucosylated HMOs, which are particularly abundant, offer significant benefits to infants and have garnered increasing interest in recent decades. However, their widespread application in the food industry and other sectors remains limited due to challenges associated with their synthesis and isolation on a large scale. This review summarizes the chemical structures of fucosylated HMOs and their biological functions, critically evaluates conventional and cutting-edge synthetic strategies, and discusses the major challenges and future prospects in this field. Despite advancements, our understanding of the bioactivities and functions of fucosylated HMOs remains limited, necessitating further in vitro and in vivo studies. Fucosidase-catalyzed transfucosylation and metabolic engineering have emerged as promising strategies for their synthesis. Additionally, plant-based synthesis offers a sustainable alternative for large-scale production. Genetic modification, reaction condition optimization, and protein engineering have significantly improved the production of fucosylated HMOs. However, challenges such as identifying economical substrates, obtaining enzyme crystal structures for molecular engineering, developing advanced purification techniques, and ensuring the safety of synthesized products remain. Systematic evaluation and integration of knowledge are essential to drive progress in this field.
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来源期刊
Food Bioscience
Food Bioscience Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
6.40
自引率
5.80%
发文量
671
审稿时长
27 days
期刊介绍: Food Bioscience is a peer-reviewed journal that aims to provide a forum for recent developments in the field of bio-related food research. The journal focuses on both fundamental and applied research worldwide, with special attention to ethnic and cultural aspects of food bioresearch.
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