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Membrane Fractionation of Protein Hydrolysates from By-Products: Recovery of Valuable Compounds from Spent Yeasts

机译:来自副产物的蛋白质水解产物的膜分馏:从废酵母中恢复有价值的化合物

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摘要

Spent brewer’s yeast (Saccharomyces sp.), the second most generated by-product from the brewing industry, contains bioactive and nutritional compounds with high added value such as proteins (40–50%), polysaccharides, fibers and vitamins. Molecules of interest from agro-industrial by-products need to be extracted, separated, concentrated, and/or purified so that a minimum purity level is achieved, allowing its application. Enzymatic hydrolysis has been successfully used in the production of peptides and protein hydrolysates. The obtained hydrolysates require efficient downstream processes such as membrane technology, which is an important tool for the recovery of thermolabile and sensitive compounds from complex mixtures, with low energy consumption and high specificity. The integration of membrane techniques that promote the separation through sieving and charge-based mechanisms is of great interest to improve the purity of the recovered fractions. This review is specifically addressed to the application of membrane technologies for the recovery of peptides from yeast protein hydrolysates. Fundamental concepts and practical aspects relative to the ultrafiltration of agro-industrial protein hydrolysates will be described. Challenges and perspectives involving the recovery of peptides from yeast protein hydrolysates will be presented and thoroughly discussed.
机译:酿酒师酵母(Saccharomyces sp。),来自酿造行业的第二个最产生的副产品,含有高附加值的生物活性和营养化合物,如蛋白质(40-50%),多糖,纤维和维生素。从农业工业副产物的感兴趣的分子需要提取,分离,浓缩和/或纯化,使得实现最小纯度水平,允许其应用。酶水解已成功地用于肽和蛋白质水解酸盐的产生。所得水解产物需要有效的下游方法,例如膜技术,这是从复杂混合物中回收热电偶和敏感化合物的重要工具,具有低能量消耗和高特异性。通过筛分和基于电荷的机制促进分离的膜技术的整合对改善回收的级分的纯度很有兴趣。本综述专门针对膜技术用于从酵母蛋白水解产物中恢复肽的应用。将描述基本概念和相对于农业产业蛋白质水解产物超滤的实际方面。讨论和彻底讨论涉及酵母蛋白质水解酸盐的肽培养的挑战和观点。

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