Li Kexin, Guo Zhenlong, Li Hui, Ren Xueyong, Sun Changxia, Feng Quandong, Kou Shunli, Li Qiang
Department of Chemistry, College of Science, Beijing Forestry University, Beijing 100083, China; Beijing Key Laboratory of Forest Food Processing and Safety, College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing 100083, China.
College of Materials Science and Technology, Beijing Forestry University, Beijing 100083, China.
Colloids Surf B Biointerfaces. 2023 Apr;224:113199. doi: 10.1016/j.colsurfb.2023.113199. Epub 2023 Feb 12.
The natural pigment of monascus is favored by human for its special coloring and physiological activity, and its development and application have attracted much attention. In this study, a novel corn oil-based nanoemulsion encapsulated with Yellow Monascus Pigment crude extract (CO-YMPN) was successfully prepared via the phase inversion composition method. The fabrication and stable conditions of the CO-YMPN including Yellow Monascus pigment crude extract (YMPCE) concentration, emulsifier ratio, pH, temperature, ionic strength, monochromatic light and storage time were investigated systemically. The optimized fabrication conditions were the emulsifier ratio (5:3 ratio of Tween 60 to Tween 80) and the YMPCE concentration (20.00% wt%)). Additionally, the DPPH radical scavenging capability of the CO-YMPN (19.47 ± 0.52%) was more excellent than each YMPCE or corn oil. Moreover, the kinetic analysis results based on Michaelis-Menten equation and constant revealed that CO-YMPN could improve lipase hydrolysis capacity. Therefore, the CO-YMPN complex had excellent storage stability and water solubility in the final water system, and the YMPCE showed brilliant stability.
红曲霉菌的天然色素因其特殊的着色和生理活性而备受人类青睐,其开发与应用已引起广泛关注。本研究通过相转化组成法成功制备了一种新型的包裹有红曲黄色素粗提物的玉米油基纳米乳液(CO-YMPN)。系统研究了CO-YMPN的制备及稳定条件,包括红曲黄色素粗提物(YMPCE)浓度、乳化剂比例、pH值、温度、离子强度、单色光和储存时间。优化的制备条件为乳化剂比例(吐温60与吐温80的比例为5:3)和YMPCE浓度(20.00%重量)。此外,CO-YMPN的DPPH自由基清除能力(19.47±0.52%)比各YMPCE或玉米油更优异。而且,基于米氏方程和常数的动力学分析结果表明,CO-YMPN可提高脂肪酶的水解能力。因此,CO-YMPN复合物在最终水体系中具有优异的储存稳定性和水溶性,且YMPCE表现出出色的稳定性。