Zhong Chengxuan, Feng Yiming, Xu Yixiang
Department of Agrotechnology and Food Science, Wageningen University & Research, 6708 PB Wageningen, The Netherlands.
Department of Food Science & Nutrition, California Polytechnic State University, San Luis Obispo, CA 93407, USA.
Foods. 2023 Feb 1;12(3):614. doi: 10.3390/foods12030614.
Fish products are consumed by human beings as a high-quality protein source. However, overfishing, and pollution puts out an urgent call to seek a new strategy to substitute fish protein for secure eco-sustainability. Plant-based fish analogs, which mimic the structure, texture, and flavor of fish meat products, are a rapid-growing segment of the food products. The purpose of this review is to discuss the feasibility and potential strategies for developing plant-based fish analog. The nutritional properties, especially the protein quality of plant-based fish analogs, were discussed. Furthermore, a thorough comparison was made between fish and terrestrial animal muscle structures, including both macroscopical and microscopical structures. Potential processing technologies for producing plant-based fish analogs from plant proteins and approaches for the characterization of the fish analog structures were elaborated. Comparing all the current processing techniques, extrusion is the predominately used technique in the current industry. At the same time, 3D-printing and electrospinning have shown the prominent potential of mimicking fish muscle structure as bottom-up approaches. Finally, key challenges and future research were discussed for the potential commercialization of plant-based fish analogues. The primary focus of this review covers the innovative works that were indexed in the Web of Science Core Collection in the past five years.
鱼类产品作为一种优质蛋白质来源被人类食用。然而,过度捕捞和污染迫切需要寻求一种新策略来替代鱼类蛋白质,以确保生态可持续性。植物基鱼类仿制品模仿鱼肉产品的结构、质地和风味,是食品领域中快速增长的一个细分市场。本综述的目的是讨论开发植物基鱼类仿制品的可行性和潜在策略。文中讨论了植物基鱼类仿制品的营养特性,尤其是蛋白质质量。此外,还对鱼类和陆生动物肌肉结构进行了全面比较,包括宏观和微观结构。阐述了从植物蛋白生产植物基鱼类仿制品的潜在加工技术以及鱼类仿制品结构表征方法。比较所有当前加工技术,挤压是当前行业中主要使用的技术。同时,3D打印和静电纺丝作为自下而上的方法,已显示出模仿鱼类肌肉结构的巨大潜力。最后,讨论了植物基鱼类仿制品潜在商业化的关键挑战和未来研究方向。本综述的主要重点涵盖了过去五年在科学引文索引核心合集中被索引的创新成果。