Nag Moupriya, Lahiri Dibyajit, Dey Ankita, Sarkar Tanmay, Pati Siddhartha, Joshi Sanket, Bunawan Hamidun, Mohammed Arifullah, Edinur Hisham Atan, Ghosh Sreejita, Ray Rina Rani
Department of Biotechnology, University of Engineering & Management, Kolkata, India.
Department of Pathology, Belle Vue Clinic, Kolkata, India.
Front Nutr. 2022 Apr 8;9:879929. doi: 10.3389/fnut.2022.879929. eCollection 2022.
In recent times, the seafood industry is found to produce large volumes of waste products comprising shrimp shells, fish bones, fins, skins, intestines, and carcasses, along with the voluminous quantity of wastewater effluents. These seafood industry effluents contain large quantities of lipids, amino acids, proteins, polyunsaturated fatty acids, minerals, and carotenoids mixed with the garbage. This debris not only causes a huge wastage of various nutrients but also roots in severe environmental contamination. Hence, the problem of such seafood industry run-offs needs to be immediately managed with a commercial outlook. Microbiological treatment may lead to the valorization of seafood wastes, the trove of several useful compounds into value-added materials like enzymes, such as lipase, protease, chitinase, hyaluronidase, phosphatase, etc., and organic compounds like bioactive peptides, collagen, gelatin, chitosan, and mineral-based nutraceuticals. Such bioconversion in combination with a bio-refinery strategy possesses the potential for environment-friendly and inexpensive management of discards generated from seafood, which can sustainably maintain the production of seafood. The compounds that are being produced may act as nutritional sources or as nutraceuticals, foods with medicinal value. Determining utilization of seafood discard not only reduces the obnoxious deposition of waste but adds economy in the production of food with nutritional and medicinal importance, and, thereby meets up the long-lasting global demand of making nutrients and nutraceuticals available at a nominal cost.
近年来,人们发现海产品行业会产生大量废品,包括虾壳、鱼骨、鱼鳍、鱼皮、鱼肠和鱼尸,以及大量废水。这些海产品行业的废水含有大量脂质、氨基酸、蛋白质、多不饱和脂肪酸、矿物质和类胡萝卜素,与垃圾混合在一起。这些废弃物不仅造成了各种营养物质的巨大浪费,还导致了严重的环境污染。因此,需要从商业角度立即解决海产品行业径流的问题。微生物处理可能会使海产品废弃物得到增值利用,将多种有用化合物转化为有附加值的物质,如脂肪酶、蛋白酶、几丁质酶、透明质酸酶、磷酸酶等酶类,以及生物活性肽、胶原蛋白、明胶、壳聚糖和矿物基营养保健品等有机化合物。这种生物转化与生物炼制策略相结合,具有对海产品产生的废弃物进行环保且低成本管理的潜力,从而可持续地维持海产品的生产。所产生的化合物可作为营养来源或营养保健品,即具有药用价值的食品。确定海产品废弃物的利用方式不仅能减少废弃物的有害堆积,还能在生产具有营养和药用价值的食品时增加经济效益,从而满足全球长期以来以低成本获取营养物质和营养保健品的需求。