State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Key Laboratory of Animal Protein Deep Processing Technology of Zhejiang, School of Food and Pharmaceutical Sciences, Ningbo University, Ningbo, Zhejiang, PR China.
Department of Food Science and Technology, University of Nebraska-Lincoln, 68588, NE, USA.
Food Res Int. 2024 Jan;175:113726. doi: 10.1016/j.foodres.2023.113726. Epub 2023 Nov 24.
Ovalbumin (OVA) has been considered as a nutrient carrier for bioactive, which has high nutrition value and multiple properties. Recently, proteins-phenolic acids composite delivery systems have received widespread attention. Therefore, this research aimed to investigate the interaction between OVA and cereal phenolic acids (CPA) to establish delivery systems for bioactive. Spectroscopy results have found that CPA generated complexes with OVA, causing the microenvironment changes of OVA. Ferulic acid (FA), p-coumaric acid (CA), vanillic acid (VA), syringic acid (SY), sinapic acid (SI), and protocatechuic acid (PA) not only quenched the intrinsic fluorescence of OVA, but also altered protein microenvironment. Further investigation showed these complexes were formed by static quenching mode, while hydrogen bond and hydrophobic interaction were dominant binding forces. Meanwhile, the interaction decreased α-helix contents and increased β-sheet contents, leading to conformational changes in OVA. Besides, OVA/CPA complexes displayed an increase in hydrophobicity with a reduce in free-SH. After combination with FA, SY, CA, VA, SI, PA, it was found that all formed complexes had superior solubility, emulsifying and antioxidant activities than native OVA. Among them, OVA-PA exhibited the highest emulsifying activity index and emulsion stability index values (36.4 ± 0.39 m/g and 60.4 ± 0.94 min) and stronger antioxidant activities. Finally, the combination with phenolic acids further improved the digestion efficiency in vitro of OVA. The OVA-CPA complexes showed improved properties for excellent delivery systems. Overall, OVA-CPA complexes could be a good carrier for bioactive, which provided valuable avenues in target delivery system application.
卵清蛋白(OVA)一直被认为是生物活性物质的营养载体,具有很高的营养价值和多种特性。最近,蛋白质-酚酸复合递药系统受到了广泛关注。因此,本研究旨在研究 OVA 与谷物酚酸(CPA)之间的相互作用,以建立生物活性物质的递药系统。光谱学结果发现,CPA 与 OVA 形成复合物,导致 OVA 的微环境发生变化。阿魏酸(FA)、对香豆酸(CA)、香草酸(VA)、丁香酸(SY)、芥子酸(SI)和原儿茶酸(PA)不仅猝灭了 OVA 的内源荧光,还改变了蛋白质的微环境。进一步的研究表明,这些复合物是通过静态猝灭模式形成的,而氢键和疏水相互作用是主要的结合力。同时,这种相互作用降低了 OVA 的α-螺旋含量,增加了β-折叠含量,导致 OVA 构象发生变化。此外,OVA/CPA 复合物的疏水性增加,自由-SH 减少。与 FA、SY、CA、VA、SI、PA 结合后,发现所有形成的复合物的溶解度、乳化和抗氧化活性均优于天然 OVA。其中,OVA-PA 表现出最高的乳化活性指数和乳液稳定性指数(36.4±0.39 m/g 和 60.4±0.94 min)和更强的抗氧化活性。最后,与酚酸结合进一步提高了 OVA 在体外的消化效率。OVA-CPA 复合物表现出改善的性质,是优良的递药系统。总的来说,OVA-CPA 复合物可以作为生物活性物质的良好载体,为靶向递药系统的应用提供了有价值的途径。