从微藻和海藻中提取增值生物活性化合物的最新生物技术应用。

IF 3.4 3区 生物学 Q1 Agricultural and Biological Sciences
Salma N Eladl, Aya M Elnabawy, Eladl G Eltanahy
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引用次数: 0

摘要

几十年来,人们一直将微藻和海藻作为食物食用,以应对全球饥饿和粮食短缺问题。最有名的可食用微藻品种是 Nostoc、Spirulina 和 Aphanizomenon,此外还有用于传统医药和食品的海藻,如紫菜,它是以 Pyropia 藻为主要成分的最受欢迎的食品之一。最近,琼脂、海藻酸、卡拉胶、纤维素、褐藻糖胶、甘露聚糖、层粘聚糖、乌尔凡聚糖和木聚糖等海藻衍生多糖被广泛应用于食品、药品和化妆品行业的胶凝剂。此外,在特定的栽培和胁迫条件下,藻细胞中还会积累色素(类胡萝卜素,特别是虾青素、叶绿素和藻蓝素)、矿物质、维生素、多不饱和脂肪酸、肽、蛋白质、多酚和二萜化合物,这些藻细胞将被收获,其生物质将被用作相关行业和应用的原料。本综述将探讨和讨论微藻和海藻的各种应用,重点是它们在生物修复中的作用、近期上市的含有藻类高附加值化合物的产品,以及正在开发中的新应用,如生物塑料和纳米粒子生产。不过,还特别关注这些应用和应用技术的局限性,以及如何克服这些局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent biotechnological applications of value-added bioactive compounds from microalgae and seaweeds.

Microalgae and seaweed have been consumed as food for several decades to combat starvation and food shortages worldwide. The most famous edible microalgae species are Nostoc, Spirulina, and Aphanizomenon, in addition to seaweeds, which are used in traditional medicine and food, such as Nori, which is one of the most popular foods containing Pyropia alga as a major ingredient. Recently, many applications use algae-derived polysaccharides such as agar, alginate, carrageenan, cellulose, fucoidan, mannan, laminarin, ulvan, and xylan as gelling agents in food, pharmaceuticals, and cosmetics industries. Moreover, pigments (carotenoids particularly astaxanthins, chlorophylls, and phycobilins), minerals, vitamins, polyunsaturated fatty acids, peptides, proteins, polyphenols, and diterpenes compounds are accumulated under specific cultivation and stress conditions in the algal cells to be harvested and their biomass used as a feedstock for the relevant industries and applications. No less critical is the use of algae in bioremediation, thus contributing significantly to environmental sustainability.This review will explore and discuss the various applications of microalgae and seaweeds, emphasising their role in bioremediation, recent products with algal added-value compounds that are now on the market, and novel under-developing applications such as bioplastics and nanoparticle production. Nonetheless, special attention is also drawn towards the limitations of these applications and the technologies applied, and how they may be overcome.

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来源期刊
Botanical Studies
Botanical Studies 生物-植物科学
CiteScore
5.50
自引率
2.90%
发文量
32
审稿时长
2.4 months
期刊介绍: Botanical Studies is an open access journal that encompasses all aspects of botany, including but not limited to taxonomy, morphology, development, genetics, evolution, reproduction, systematics, and biodiversity of all plant groups, algae, and fungi. The journal is affiliated with the Institute of Plant and Microbial Biology, Academia Sinica, Taiwan.
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