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雨生红球藻虾青素类胡萝卜素生物合成的研究进展:最新进展与展望。

Advancement of Carotenogenesis of Astaxanthin from Haematococcus pluvialis: Recent Insight and Way Forward.

机构信息

Institut Biologi Sains, Fakulti Sains, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.

Department of Chemical Engineering, Faculty of Engineering, Mahidol University, Salaya, Nakhon Pathom, 73170, Thailand.

出版信息

Mol Biotechnol. 2024 Mar;66(3):402-423. doi: 10.1007/s12033-023-00768-1. Epub 2023 Jun 3.

Abstract

The demand for astaxanthin has been increasing for many health applications ranging from pharmaceuticals, food, cosmetics, and aquaculture due to its bioactive properties. Haematococcus pluvialis is widely recognized as the microalgae species with the highest natural accumulation of astaxanthin, which has made it a valuable source for industrial production. Astaxanthin produced by other sources such as chemical synthesis or fermentation are often produced in the cis configuration, which has been shown to have lower bioactivity. Additionally, some sources of astaxanthin, such as shrimp, may denature or degrade when exposed to high temperatures, which can result in a loss of bioactivity. Producing natural astaxanthin through the cultivation of H. pluvialis is presently a demanding and time-consuming task, which incurs high expenses and restricts the cost-effective industrial production of this valuable substance. The production of astaxanthin occurs through two distinct pathways, namely the cytosolic mevalonate pathway and the chloroplast methylerythritol phosphate (MEP) pathway. The latest advancements in enhancing product quality and extracting techniques at a reasonable cost are emphasized in this review. The comparative of specific extraction processes of H. pluvialis biological astaxanthin production that may be applied to large-scale industries were assessed. The article covers a contemporary approach to optimizing microalgae culture for increased astaxanthin content, as well as obtaining preliminary data on the sustainability of astaxanthin production and astaxanthin marketing information.

摘要

虾青素的需求一直在增加,因为其具有生物活性,被广泛应用于医药、食品、化妆品和水产养殖等领域。雨生红球藻被广泛认为是天然虾青素积累量最高的微藻,这使得它成为工业生产的宝贵资源。其他来源(如化学合成或发酵)生产的虾青素通常以顺式构型产生,其生物活性较低。此外,一些虾青素的来源,如虾,在暴露于高温时可能会变性或降解,从而导致生物活性丧失。通过培养雨生红球藻来生产天然虾青素目前是一项具有挑战性和耗时的任务,需要高成本,限制了这种有价值物质的经济高效的工业生产。虾青素的生产通过两条截然不同的途径进行,即细胞质甲羟戊酸途径和质体甲基赤藓醇磷酸(MEP)途径。本综述强调了以合理成本提高产品质量和提取技术的最新进展。评估了可能适用于大规模工业的雨生红球藻生物虾青素生产的特定提取工艺的比较。本文涵盖了优化微藻培养以增加虾青素含量的现代方法,以及获得虾青素生产可持续性和虾青素市场信息的初步数据。

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