Mashhadi Abolghasem Fatemeh, Kim Ryun Hee, Park Sun Young, Lim Taehwan, Lee Haeseong, Hwang Keum Taek, Kim Jaecheol
Department of Food and Nutrition, and Research Institute of Human Ecology, Seoul National University, Seoul, South Korea.
BK21 FOUR Education and Research Team for Sustainable Food and Nutrition, Seoul National University, Seoul, South Korea.
J Sci Food Agric. 2023 Oct;103(13):6208-6218. doi: 10.1002/jsfa.12689. Epub 2023 May 21.
Black cumin seeds (black seed; BS) contain various bioactive compounds, such as thymoquinone (TQ). Roasting and ultrasound-assisted enzymatic treatment (UAET) as pre-treatments can increase the phytochemical content in the BS oil. This study aimed to investigate the effects of pre-treatments on the TQ content and the yield of the BS oil and to profile the composition of defatted BS meal (DBSM), followed by evaluating antioxidant properties of the DBSM.
The extraction yield of crude oil from BS was not affected by the roasting time. The highest extraction yield (47.8 ± 0.4%) was obtained with UAET cellulase-pH 5 (enzyme concentration of 100%). Roasting decreased the TQ content of the oil, while the UAET cellulase-pH 5 treatment with an enzyme concentration of 100% yielded the highest TQ (125.1 ± 2.7 μg mL ). Additionally, the UAET cellulase-pH 5 treatment increased total phenolics and flavonoids of DBSM by approximately two-fold, compared to roasting or ultrasound treatment (UT) alone. Principal component analysis revealed that the UAET method might be more suitable for extracting BS oil with higher TQ content than roasting and UT.
Compared to roasting or UT, using ultrasound along with cellulase could improve the oil yield and TQ in the oil from BS and obtain the DBSM with higher phenolics, flavonoids, and antioxidant activity. © 2023 Society of Chemical Industry.
黑孜然籽(黑籽;BS)含有多种生物活性化合物,如百里醌(TQ)。烘焙和超声辅助酶处理(UAET)作为预处理方法可以增加BS油中的植物化学成分含量。本研究旨在探究预处理对BS油中TQ含量和得率的影响,剖析脱脂BS粕(DBSM)的成分,随后评估DBSM的抗氧化性能。
BS原油的提取率不受烘焙时间的影响。采用UAET纤维素酶 - pH 5(酶浓度100%)时获得最高提取率(47.8±0.4%)。烘焙降低了油中的TQ含量,而采用酶浓度100%的UAET纤维素酶 - pH 5处理得到的TQ含量最高(125.1±2.7μg/mL)。此外,与单独烘焙或超声处理(UT)相比,UAET纤维素酶 - pH 5处理使DBSM中的总酚和黄酮类物质增加了约两倍。主成分分析表明,与烘焙和UT相比,UAET方法可能更适合提取TQ含量更高的BS油。
与烘焙或UT相比,超声结合纤维素酶使用可以提高BS油的得率和油中TQ含量,并获得具有更高酚类、黄酮类和抗氧化活性的DBSM。©2023化学工业协会。