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从海洋废弃物中可持续生产虾青素的生物炼制方法和环保提取。

Biorefinery approach and environment-friendly extraction for sustainable production of astaxanthin from marine wastes.

机构信息

a Marine Bioprocessing Facility , Centre for Aquaculture and Seafood Development, Fisheries and Marine Institute, Memorial University of Newfoundland , St. John's , Canada.

b Department of Biochemistry , Memorial University of Newfoundland , St. John's , Canada.

出版信息

Crit Rev Biotechnol. 2019 Jun;39(4):469-488. doi: 10.1080/07388551.2019.1573798. Epub 2019 Apr 2.

Abstract

Microorganisms (microalgae and fungi) are currently the main sources of astaxanthin; however, this carotenoid also accumulates in crustaceans, salmonids, and birds. Seafood (derived from marine animals) processing wastes are significant sources of astaxanthin and can be employed as feed and for nutraceutical applications, where shrimp wastes are the most exploited seafood industry waste employed for astaxanthin extraction. This review discusses different sources, efficient environment-friendly extraction methods employed for astaxanthin extraction, biorefinery approaches for efficient extraction and future aspects of the application of these waste sources for commercial preparation of astaxanthin complexes. It also includes a brief overview of the advantages, disadvantages, and challenges for obtaining astaxanthin from various sources and various case scenarios integrating different biorefinery approaches.

摘要

微生物(微藻和真菌)是目前虾青素的主要来源;然而,这种类胡萝卜素也在甲壳类动物、鲑鱼和鸟类中积累。海鲜(来源于海洋动物)加工废弃物是虾青素的重要来源,可以用作饲料和营养保健品应用,其中虾废弃物是最受开发的海鲜工业废弃物,用于虾青素提取。本综述讨论了不同的来源、用于虾青素提取的高效环保提取方法、生物炼制方法在有效提取方面的应用以及这些废物来源在商业制备虾青素复合物方面的未来前景。它还包括了从各种来源获得虾青素的优点、缺点和挑战的简要概述,以及整合不同生物炼制方法的各种案例情景。

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