León-López Arely, Pérez-Marroquín Xóchitl Alejandra, Estrada-Fernández Ana Guadalupe, Campos-Lozada Gieraldin, Morales-Peñaloza Alejandro, Campos-Montiel Rafael G, Aguirre-Álvarez Gabriel
Instituto de Ciencias Agropecuarias, Universidad Autónoma del Estado de Hidalgo, Av. Universidad Km 1, Tulancingo C.P. 43600, Hidalgo, Mexico.
Instituto Tecnológico Superior del Oriente del Estado de Hidalgo, Carretera Apan-Tepeapulco Km 3.5, Colonia Las Peñitas, Apan C.P. 43900, Hidalgo, Mexico.
Polymers (Basel). 2022 Mar 21;14(6):1258. doi: 10.3390/polym14061258.
There are two types of milk whey obtained from cheese manufacture: sweet and acid. It retains around 55% of the nutrients of the milk. Milk whey is considered as a waste, creating a critical pollution problem, because 9 L of whey are produced from every 10 L of milk. Some treatments such as hydrolysis by chemical, fermentation process, enzymatic action, and green technologies (ultrasound and thermal treatment) are successful in obtaining peptides from protein whey. Milk whey peptides possess excellent functional properties such as antihypertensive, antiviral, anticancer, immunity, and antioxidant, with benefits in the cardiovascular, digestive, endocrine, immune, and nervous system. This review presents an update of the applications of milk whey hydrolysates as a high value-added peptide based on their functional properties.
甜乳清和酸乳清。它保留了牛奶约55%的营养成分。乳清被视为一种废弃物,会造成严重的污染问题,因为每10升牛奶会产生9升乳清。一些处理方法,如化学水解、发酵过程、酶促作用以及绿色技术(超声和热处理),能够成功地从乳清蛋白中获得肽。乳清肽具有出色的功能特性,如降血压、抗病毒、抗癌、免疫和抗氧化等,对心血管、消化、内分泌、免疫和神经系统有益。本文综述基于乳清水解物的功能特性,对其作为高附加值肽的应用进行了更新。