Ji Wenxuan, Yan Zihao, You Jiale, Yan Xiaoli, Zhang Nuo, Zhang Min, Liu Peng, Yue Panpan, Ullah Zain, Zhao Ting, Yang Liuqing
School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, China.
J Sci Food Agric. 2025 Jul 2. doi: 10.1002/jsfa.70022.
The application of apigenin (AP) with strong neuroprotective effects that can rapidly cross the blood-brain barrier, offering potential therapeutic effects for diverse neurological diseases, is limited by its poor water solubility and chemical instability. The barley protein (BP) covalence effect with AP will have the potential to overcome these obstacles. The present study investigated systematically the characterization and structure of BP-AP complexes. The performance of BP-AP complexes in digestion and cellular transport were evaluated using in vitro gastrointestinal digestion and Caco-2 cells. HO-induced damage cell model was provided a potential information for BP-AP complexes with respect to neuroprotective application.
Apigenin demonstrated successful covalent binding to chromophoric groups (Tyr and Trp) in BP. The BP-AP covalent complexes (C-BA) were within the nanometric size range and exhibited high apigenin encapsulation efficiency (88.85%) with the highest apigenin solubility (9.428 μg mL), attributed to covalent binding facilitating BP's structure unfolding and irregularity. Additionally, C-BA demonstrated a superior release rate and transmembrane transport capacity over four times and two times higher than that of free apigenin, respectively. C-BA exhibited the superior nerve protective activity.
The present study has demonstrated that the covalent binding complex of BP and AP exhibits excellent properties, which confirms that BP may serve as an excellent carrier for apigenin delivery, expanding applications of AP in the food industry. © 2025 Society of Chemical Industry.
芹菜素(AP)具有很强的神经保护作用,能够迅速穿过血脑屏障,对多种神经系统疾病具有潜在治疗效果,但其水溶性差和化学稳定性低限制了其应用。大麦蛋白(BP)与AP的共价作用有可能克服这些障碍。本研究系统地研究了BP-AP复合物的特性和结构。使用体外胃肠道消化和Caco-2细胞评估了BP-AP复合物在消化和细胞转运方面的性能。HO诱导的损伤细胞模型为BP-AP复合物在神经保护应用方面提供了潜在信息。
芹菜素与BP中的发色团(酪氨酸和色氨酸)成功共价结合。BP-AP共价复合物(C-BA)尺寸在纳米范围内,具有较高的芹菜素包封效率(88.85%)和最高的芹菜素溶解度(9.428μg/mL),这归因于共价结合促进了BP结构的展开和不规则性。此外,C-BA的释放速率和跨膜转运能力分别比游离芹菜素高出四倍和两倍以上。C-BA表现出优异的神经保护活性。
本研究表明,BP和AP的共价结合复合物具有优异的性能,证实了BP可作为芹菜素递送的优良载体,拓展了AP在食品工业中的应用。©2025化学工业协会。