Tao Xiaoya, Shi Hang, Cao Ailing, Cai Luyun
Ningbo Research Institute, College of Biosystems Engineering and Food Science, Zhejiang University Ningbo 315100 China
Institute for Innovative Development of Food Industry, Institute for Advanced Study, Shenzhen University Shenzhen 518060 China.
RSC Adv. 2022 Jun 30;12(28):18115-18126. doi: 10.1039/d2ra02708a. eCollection 2022 Jun 14.
In this research, ovalbumin (OVA) and sodium alginate (SA) were used as the materials to prepare an OVA-SA composite carrier, which protected and encapsulated the hydrophobic kaempferol (KAE) and the hydrophilic tannic acid (TA) (OVA-SA, OVA-TA-SA, OVA-KAE-SA, and OVA-TA-KAE-SA). Results showed that the observation of small diffraction peaks in carriers proved the successful encapsulation of KAE/TA. The protein conformation of the composite nanoparticles changed. OVA-TA-SA composite nanoparticles had the highest α-helix content and the fewest random coils, so the protein structure of it had the strongest stability. OVA-TA-KAE-SA composite nanoparticles had the strongest system stability and thermal stability, which might be due to the synergistic effect of the two polyphenols, suggesting the encapsulation of KAE/TA increased the system stability and the thermal stability of OVA-SA composite nanoparticles. Additionally, the composite nanoparticles were endowed with antioxidant ability and antibacterial ability (against and ) in the order OVA-TA-SA > OVA-TA-KAE-SA > OVA-KAE-SA based on the difference in antibacterial diameter (, mm) and square (, mm), indicating that polyphenols enhanced the antibacterial and antioxidant ability of OVA-SA composite nanoparticles, and the enhancement effect of TA was stronger than that of KAE. These results provide a theoretical basis for the application of OVA-SA composite nanoparticles in the delivery of bioactive compounds.
在本研究中,以卵清蛋白(OVA)和海藻酸钠(SA)为原料制备了OVA-SA复合载体,该载体对疏水性的山奈酚(KAE)和亲水性的单宁酸(TA)进行了保护和包封(OVA-SA、OVA-TA-SA、OVA-KAE-SA和OVA-TA-KAE-SA)。结果表明,载体中出现小衍射峰证明KAE/TA成功包封。复合纳米粒子的蛋白质构象发生了变化。OVA-TA-SA复合纳米粒子的α-螺旋含量最高,无规卷曲最少,因此其蛋白质结构稳定性最强。OVA-TA-KAE-SA复合纳米粒子具有最强的体系稳定性和热稳定性,这可能是由于两种多酚的协同作用,表明KAE/TA的包封提高了OVA-SA复合纳米粒子的体系稳定性和热稳定性。此外,基于抗菌直径(,mm)和抑菌圈面积(,mm²)的差异,复合纳米粒子按OVA-TA-SA>OVA-TA-KAE-SA>OVA-KAE-SA的顺序具有抗氧化能力和抗菌能力(对和),表明多酚增强了OVA-SA复合纳米粒子的抗菌和抗氧化能力,且TA的增强效果强于KAE。这些结果为OVA-SA复合纳米粒子在生物活性化合物递送中的应用提供了理论依据。