Zhu Pei, Zhang Ying, Zhang Dianwei, Liu Huilin, Sun Baoguo
School of Food and Health, Beijing Technology and Business University, Beijing 100048, China.
School of Light Industry, Beijing Technology and Business University, Beijing 100048, China.
Polymers (Basel). 2023 Jan 20;15(3):538. doi: 10.3390/polym15030538.
Encapsulating bioactive avenanthramides (AVAs) in carriers to respond to the environmental changes of food thermal processing allows the controlled release of AVAs for the effective inhibition of biohazards. In this study, fluorescent molecular imprinted polymers (FMIPs) loaded with AVAs were prepared by reverse microemulsion. The fluorescent signal was generated by carbon dots (CDs), which were derived from oat bran to determine the load of AVAs. The FMIPs were uniformly spherical in appearance and demonstrated favorable properties, such as thermal stability, protection of AVAs against photodegradation, high encapsulation efficiency, and effective scavenging of free radicals. After consideration of the different kinetics models, the release of AVAs from the FMIPs matched the Weibull model and followed a Fickian diffusion mechanism. The FMIPs exhibited good inhibition of pyrraline in a simulated casein-ribose system and in milk samples, indicating the release of AVAs could inhibit the generation of pyrraline.
将生物活性燕麦酰胺(AVAs)包裹于载体中以应对食品热加工过程中的环境变化,能够实现AVAs的可控释放,从而有效抑制生物危害。在本研究中,通过反相微乳液制备了负载AVAs的荧光分子印迹聚合物(FMIPs)。荧光信号由源自燕麦麸皮的碳点(CDs)产生,用于测定AVAs的负载量。FMIPs外观呈均匀球形,具有良好的性能,如热稳定性、保护AVAs免受光降解、高包封率以及有效清除自由基。在考虑不同动力学模型后,AVAs从FMIPs中的释放符合威布尔模型,并遵循菲克扩散机制。FMIPs在模拟酪蛋白 - 核糖体系和牛奶样品中对吡咯赖氨酸表现出良好的抑制作用,表明AVAs的释放可抑制吡咯赖氨酸的生成。