食品科学
香兰素酸
化学
麸皮
阿魏酸
淀粉
丁香酸
酚酸
作文(语言)
抗性淀粉
抗氧化剂
没食子酸
原材料
生物化学
有机化学
语言学
哲学
作者
Alessandro Cammerata,Barbara Laddomada,Francesco Milano,Francesco Camerlengo,Marco Bonarrigo,Stefania Masci,Francesco Sestili
出处
期刊:Foods
[MDPI AG]
日期:2021-11-16
卷期号:10 (11): 2817-2817
被引量:11
标识
DOI:10.3390/foods10112817
摘要
Durum wheat milling is a key process step to improve the quality and safety of final products. The aim of this study was to characterize three bran-enriched milling fractions (i.e., F250, G230 and G250), obtained from three durum wheat grain samples, by using an innovative micronization and air-classification technology. Milling fractions were characterized for main standard quality parameters and for alveographic properties, starch composition and content, phenolic acids, antioxidant activity and ATIs. Results showed that yield recovery, ash content and particle size distributions were influenced either by the operating conditions (230 or 250) or by the grain samples. While total starch content was lower in the micronized sample and air-classified fractions, the P/L ratio increased in air-classified fractions as compared to semolina. Six main individual phenolic acids were identified through HPLC-DAD analysis (i.e., ferulic acid, vanillic acid, p-coumaric acid, sinapic acid, syringic and p-hydroxybenzoic acids). Compared to semolina, higher contents of all individual phenolic components were found in all bran-enriched fractions. The highest rise of TPAs occurred in the F250 fraction, which was maintained in the derived pasta. Moreover, bran-enriched fractions showed significant reductions of ATIs content versus semolina. Overall, our data suggest the potential health benefits of F250, G230 and G250 and support their use to make durum-based foods.
科研通智能强力驱动
Strongly Powered by AbleSci AI