Universidade Católica Portuguesa, CBQF-Centro de Biotecnologia e Química Fina-Aboratório Associado, Escola Superior de Biotecnologia, Rua Diogo Botelho 1327, 4169-005 Porto, Portugal.
Molecules. 2022 Aug 11;27(16):5115. doi: 10.3390/molecules27165115.
Proteins have always been vital biological molecules used for industrial purposes, human nutrition and health. Nowadays, seeking new alternatives and sources of these biomolecules is becoming an increasing research trend derived from the present consumer awareness between food consumption and health promotion, but also on environmental sustainability. Although there are different consolidated/traditional downstream processes to obtain proteins, such as chromatography tools, alkali hydrolysis, precipitation by inorganic salts and organic solvents, their industrial-scale application still demands urgent innovation due to the poor recovery yields, high costs and time-consuming steps, environmental impact as well as some toxic concerns. Polyelectrolyte precipitation represents a green, innovative alternative for protein recovery; however, there are reduced data regarding its pilot or industrial-scale application. In this literature work, the action mechanism and principles with regards to its functionality and insights for its application on a big scale are reviewed. Overall, this review discusses the novelty and sustainability of protein precipitation by polyelectrolytes from different sources against traditional techniques as well as highlights the relationship between protein source, production relevance and bioactive properties that are key factors to maximize the application of this extractive method on a circular economy context.
蛋白质一直是用于工业用途、人类营养和健康的重要生物分子。如今,寻求这些生物分子的新替代品和来源已成为一个日益增长的研究趋势,这源于当前消费者对食品消费与健康促进之间的意识,也源于对环境可持续性的关注。尽管有不同的已确立/传统的下游工艺可用于获得蛋白质,例如色谱工具、碱水解、无机盐和有机溶剂沉淀,但由于回收产率低、成本高、步骤耗时、对环境的影响以及一些毒性问题,其在工业规模上的应用仍迫切需要创新。聚电解质沉淀是一种绿色、创新的蛋白质回收替代方法;然而,关于其在中试或工业规模应用的数据较少。在本文献综述中,综述了其功能的作用机制和原理,以及在大规模应用方面的见解。总的来说,本综述讨论了不同来源的聚电解质沉淀蛋白质相对于传统技术的新颖性和可持续性,并强调了蛋白质来源、生产相关性和生物活性特性之间的关系,这些都是最大限度地将这种提取方法应用于循环经济背景下的关键因素。