渔业废弃物:海洋中尚未被发现的宝藏:生物分子来源、提取方法和增值利用。
Fishery Wastes as a Yet Undiscovered Treasure from the Sea: Biomolecules Sources, Extraction Methods and Valorization.
机构信息
Institute of Polar Sciences, National Research Council, 98122 Messina, Italy.
AGRIS-Sardegna, Servizio Ricerca Prodotti Ittici, Bonassai, 07100 Sassari, Italy.
出版信息
Mar Drugs. 2020 Dec 7;18(12):622. doi: 10.3390/md18120622.
The search for new biological sources of commercial value is a major goal for the sustainable management of natural resources. The huge amount of fishery by-catch or processing by-products continuously produced needs to be managed to avoid environmental problems and keep resource sustainability. Fishery by-products can represent an interesting source of high added value bioactive compounds, such as proteins, carbohydrates, collagen, polyunsaturated fatty acids, chitin, polyphenolic constituents, carotenoids, vitamins, alkaloids, tocopherols, tocotrienols, toxins; nevertheless, their biotechnological potential is still largely underutilized. Depending on their structural and functional characteristics, marine-derived biomolecules can find several applications in food industry, agriculture, biotechnological (chemical, industrial or environmental) fields. Fish internal organs are a rich and underexplored source of bioactive compounds; the fish gut microbiota biosynthesizes essential or short-chain fatty acids, vitamins, minerals or enzymes and is also a source of probiotic candidates, in turn producing bioactive compounds with antibiotic and biosurfactant/bioemulsifier activities. Chemical, enzymatic and/or microbial processing of fishery by-catch or processing by-products allows the production of different valuable bioactive compounds; to date, however, the lack of cost-effective extraction strategies so far has prevented their exploitation on a large scale. Standardization and optimization of extraction procedures are urgently required, as processing conditions can affect the qualitative and quantitative properties of these biomolecules. Valorization routes for such raw materials can provide a great additional value for companies involved in the field of bioprospecting. The present review aims at collecting current knowledge on fishery by-catch or by-products, exploring the valorization of their active biomolecules, in application of the circular economy paradigm applied to the fishery field. It will address specific issues from a biorefinery perspective: (i) fish tissues and organs as potential sources of metabolites, antibiotics and probiotics; (ii) screening for bioactive compounds; (iii) extraction processes and innovative technologies for purification and chemical characterization; (iv) energy production technologies for the exhausted biomass. We provide a general perspective on the techno-economic feasibility and the environmental footprint of the production process, as well as on the definition of legal constraints for the new products production and commercial use.
寻找具有商业价值的新生物资源是可持续管理自然资源的主要目标。大量的渔业副渔获物或加工副产品需要加以管理,以避免环境问题并保持资源可持续性。渔业副渔获物可以代表具有高附加值生物活性化合物的有趣来源,例如蛋白质、碳水化合物、胶原蛋白、多不饱和脂肪酸、几丁质、多酚成分、类胡萝卜素、维生素、生物碱、生育酚、三烯生育酚、毒素;然而,它们的生物技术潜力在很大程度上仍未得到充分利用。根据其结构和功能特性,海洋衍生生物分子可以在食品工业、农业、生物技术(化学、工业或环境)领域找到多种应用。鱼类内脏器官是生物活性化合物的丰富但未充分开发的来源;鱼类肠道微生物群生物合成必需或短链脂肪酸、维生素、矿物质或酶,也是益生菌候选物的来源,进而产生具有抗生素和生物表面活性剂/生物乳化剂活性的生物活性化合物。对渔业副渔获物或加工副产品进行化学、酶和/或微生物处理,可以生产出不同有价值的生物活性化合物;然而,迄今为止,缺乏具有成本效益的提取策略阻止了它们的大规模开发。迫切需要标准化和优化提取程序,因为处理条件会影响这些生物分子的定性和定量特性。这种原材料的增值途径可以为从事生物勘探领域的公司提供巨大的附加价值。本综述旨在收集有关渔业副渔获物或副产品的最新知识,探讨其活性生物分子的增值利用,应用于渔业领域的循环经济模式。它将从生物炼制的角度解决具体问题:(i)鱼类组织和器官作为代谢物、抗生素和益生菌的潜在来源;(ii)生物活性化合物的筛选;(iii)提取过程和用于纯化和化学特性的创新技术;(iv)用于耗尽生物质的能源生产技术。我们提供了关于生产过程的技术经济可行性和环境足迹的一般观点,以及新产品生产和商业用途的法律限制的定义。