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微藻虾青素:结构、生物合成、生产策略及应用综述。

Astaxanthin from microalgae: A review on structure, biosynthesis, production strategies and application.

机构信息

Bioproducts Processing Research Laboratory (BPRL), Department of Bio Engineering, National Institute of Technology, Agartala, 799046, India.

Department of Chemical Engineering, National Institute of Technology, Agartala 799046, India.

出版信息

Food Res Int. 2024 Jan;176:113841. doi: 10.1016/j.foodres.2023.113841. Epub 2023 Dec 10.

Abstract

Astaxanthin is a red-colored secondary metabolite with excellent antioxidant properties, typically finds application as foods, feed, cosmetics, nutraceuticals, and medications. Astaxanthin is usually produced synthetically using chemicals and costs less as compared to the natural astaxanthin obtained from fish, shrimps, and microorganisms. Over the decades, astaxanthin has been naturally synthesized from Haematococcus pluvialis in commercial scales and remains exceptional, attributed to its higher bioactive properties as compared to synthetic astaxanthin. However, the production cost of algal astaxanthin is still high due to several bottlenecks prevailing in the upstream and downstream processes. To that end, the present study intends to review the recent trends and advancements in astaxanthin production from microalgae. The structure of astaxanthin, sources, production strategies of microalgal astaxanthin, and factors influencing the synthesis of microalgal astaxanthin were discussed while detailing the pathway involved in astaxanthin biosynthesis. The study also discusses the relevant downstream process used in commercial scales and details the applications of astaxanthin in various health related issues.

摘要

虾青素是一种红色的次生代谢产物,具有出色的抗氧化性能,通常应用于食品、饲料、化妆品、营养保健品和药物。虾青素通常使用化学物质合成,成本低于从鱼类、虾类和微生物中获得的天然虾青素。几十年来,虾青素已在商业规模上从雨生红球藻中自然合成,并且仍然很出色,这归因于其比合成虾青素更高的生物活性特性。然而,由于在上游和下游过程中存在几个瓶颈,藻类虾青素的生产成本仍然很高。为此,本研究旨在综述微藻虾青素生产的最新趋势和进展。本文详细讨论了虾青素的结构、来源、微藻虾青素的生产策略以及影响微藻虾青素合成的因素,同时详细介绍了虾青素生物合成途径。该研究还讨论了商业规模中使用的相关下游工艺,并详细介绍了虾青素在各种与健康相关问题中的应用。

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