Vieira Elsa F, da Silva Diana Dias, Carmo Helena, Ferreira Isabel M P L V O
LAQV/REQUIMTE, Departamento de Ciências Químicas, Laboratório de Bromatologia e Hidrologia, Faculdade de Farmácia, Universidade do Porto, Rua de Jorge Viterbo Ferreira, 228, 4050-313 Porto, Portugal.
UCIBIO/REQUIMTE, Departamento de Ciências Biológicas, Laboratório de Toxicologia, Faculdade de Farmácia, Universidade do Porto, Rua de Jorge Viterbo Ferreira, 228, 4050-313 Porto, Portugal.
Food Chem. 2017 Aug 1;228:602-609. doi: 10.1016/j.foodchem.2017.02.050. Epub 2017 Feb 12.
The protein fraction of Brewers' spent grain (BSG) was used as substrate to obtain hydrolysates with antioxidant activity. Three enzymatic approaches were applied: brewer's spent yeast (BSY) proteases, Neutrase® and Alcalase®, at the same proteolytic activity (1U/mL), using an enzyme/substrate ratio of 10:100 (v/v), at 50°C, 4h. Total Phenolic Content (TPC) and Ferric Ion Reducing Antioxidant Power (FRAP) of hydrolysates and fractions <10kDa and <3kDa were assayed. Additionally, the protective ability of <10kDa fractions against oxidative stress on Caco-2 and HepG2 cells was investigated. Alcalase® hydrolysate presented significantly (p<0.05) higher TPC and FRAP (0.083mgGAE/mgdw; 0.101mgTE/mgdw, respectively) than Neutrase® and BSY hydrolysates. The three BSG protein hydrolysates (fraction <10kDa) exerted protective effect against free-radical induced cytotoxicity in Caco-2 and HepG2 cell lines, but the strongest effect was observed for BSY hydrolysates, therefore, it presents greater potential as functional ingredient.
啤酒糟(BSG)的蛋白质部分被用作底物,以获得具有抗氧化活性的水解产物。采用了三种酶解方法:啤酒废酵母(BSY)蛋白酶、中性蛋白酶(Neutrase®)和碱性蛋白酶(Alcalase®),在相同的蛋白水解活性(1U/mL)下,酶/底物比例为10:100(v/v),于50℃反应4小时。对水解产物以及分子量小于10kDa和小于3kDa的组分的总酚含量(TPC)和铁离子还原抗氧化能力(FRAP)进行了测定。此外,还研究了分子量小于10kDa的组分对Caco-2和HepG2细胞氧化应激的保护能力。碱性蛋白酶(Alcalase®)水解产物的TPC和FRAP显著更高(p<0.05)(分别为0.083mg没食子酸当量/mg干重;0.101mg Trolox当量/mg干重),高于中性蛋白酶(Neutrase®)和啤酒废酵母(BSY)水解产物。三种啤酒糟蛋白水解产物(分子量小于10kDa的组分)对Caco-2和HepG2细胞系中自由基诱导的细胞毒性均有保护作用,但啤酒废酵母(BSY)水解产物的效果最强,因此,它作为功能性成分具有更大的潜力。