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来自海洋微藻的岩藻黄质:一种用于工业生产和食品应用的有前景的生物活性化合物。

Fucoxanthin from marine microalgae: A promising bioactive compound for industrial production and food application.

作者信息

Sun Han, Yang Shufang, Zhao Weiyang, Kong Qing, Zhu Changliang, Fu Xiaodan, Zhang Fang, Liu Zhemin, Zhan Yuming, Mou Haijin, He Yongjin

机构信息

College of Food Science and Engineering, Ocean University of China, Qingdao, China.

Institute for Advanced Study, Shenzhen University, Shenzhen, China.

出版信息

Crit Rev Food Sci Nutr. 2023;63(26):7996-8012. doi: 10.1080/10408398.2022.2054932. Epub 2022 Mar 23.

Abstract

Fucoxanthin attracts increasing attentions due to its potential health benefits, which has been exploited in several food commodities. However, fucoxanthin available for industrial application is mainly derived from macroalgae, and is not yet sufficiently cost-effective compared with microalgae. This review focuses on the strategies to improve fucoxanthin productivity and approaches to reduce downstream costs in microalgal production. Here we comprehensively and critically discuss ways and methods to increase the cell growth rate and fucoxanthin content of marine microalgae, including strain screening, condition optimization, design of culture mode, metabolic and genetic engineering, and scale-up production of fucoxanthin. The approaches in downstream processes provide promising alternatives for fucoxanthin production from marine microalgae. Besides, this review summarizes fucoxanthin improvements in solubility and bioavailability by delivery system of emulsion, nanoparticle, and hydrogel, and discusses fucoxanthin metabolism with gut microbes. Fucoxanthin production from marine microalgae possesses numerous advantages in environmental sustainability and final profits to meet incremental global market demands of fucoxanthin. Strategies of adaptive evolution, multi-stage cultivation, and bioreactor improvements have tremendous potentials to improve economic viability of the production. Moreover, fucoxanthin is promising as the microbiota-targeted ingredient, and nanoparticles can protect fucoxanthin from external environmental factors for improving the solubility and bioavailability.

摘要

岩藻黄质因其潜在的健康益处而受到越来越多的关注,已在多种食品中得到应用。然而,可用于工业应用的岩藻黄质主要来源于大型藻类,与微藻相比,其成本效益仍不够高。本文综述了提高微藻生产中岩藻黄质产量的策略以及降低下游成本的方法。在此,我们全面且批判性地讨论了提高海洋微藻细胞生长速率和岩藻黄质含量的方法,包括菌株筛选、条件优化、培养模式设计、代谢和基因工程以及岩藻黄质的规模化生产。下游加工过程中的方法为从海洋微藻中生产岩藻黄质提供了有前景的替代方案。此外,本文总结了通过乳液、纳米颗粒和水凝胶递送系统改善岩藻黄质溶解度和生物利用度的方法,并讨论了岩藻黄质与肠道微生物的代谢情况。从海洋微藻中生产岩藻黄质在环境可持续性和最终利润方面具有诸多优势,能够满足全球对岩藻黄质不断增长的市场需求。适应性进化、多阶段培养和生物反应器改进等策略在提高生产的经济可行性方面具有巨大潜力。此外,岩藻黄质有望成为针对微生物群的成分,纳米颗粒可以保护岩藻黄质免受外部环境因素影响,从而提高其溶解度和生物利用度。

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