School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.
State Key Laboratory of Utilization of Woody Oil Resource, Hunan Academy of Forestry, Changsha 410007, China.
Food Res Int. 2022 Dec;162(Pt B):112138. doi: 10.1016/j.foodres.2022.112138. Epub 2022 Nov 17.
Eucalyptus citriodora oil (ECO) has excellent antibacterial properties, but its application is limited due to its volatility and lack of antimicrobial targeting properties. Zinc ions are metal ions on which the active center of metalloproteinases depend and have antibacterial functions. This study aimed to prepare nanoparticles against Escherichia coli O157:H7 (E. coli O157:H7) by encapsulating ECO in zein with nano-precipitation method, and chelating zinc metal ions with electrostatic interaction to improve the stability, controlled-release ability and antibacterial ability of nanoparticles. Herein, the antibacterial mechanism of ECO against E. coli O157:H7 was investigated from the molecular level. The results of molecular docking showed that ECO inhibited the activity of G6PDH in respiratory metabolism pathway (hexose monophophate pathway), and also inhibited the DNA polymerase. Furthermore, we demonstrated that the controlled-release nanoparticles (ECO/Zn-loaded NPT) possessed suitable particle size (275.43 nm), poly dispersity index (PDI, 0.254), zeta potential (-31.12 mV) and chelation rate (42.3 %). The results of Fourier Transform Infrared spectrometer (FT-IR), and Raman spectrum confirmed that ECO was successfully encapsulated in the nanoparticles. Meanwhile, the results of antibacterial experiments showed that ECO/Zn-loaded NPT possessed better antibacterial activity than ECO/zein nanoparticles. Finally, the test of application in fruit juice indicated that ECO/Zn-loaded NPT had no significant effect on physico-chemical properties and exhibited potential application in juice preservation.
柠檬桉油 (ECO) 具有优异的抗菌性能,但由于其挥发性和缺乏抗菌靶向特性,其应用受到限制。锌离子是金属蛋白酶活性中心所依赖的金属离子,具有抗菌功能。本研究旨在通过纳米沉淀法将 ECO 包封在玉米醇溶蛋白中制备针对大肠杆菌 O157:H7 (E. coli O157:H7) 的纳米粒子,并通过静电相互作用螯合锌金属离子,以提高纳米粒子的稳定性、控释能力和抗菌能力。在此,从分子水平研究了 ECO 对大肠杆菌 O157:H7 的抗菌机制。分子对接结果表明,ECO 抑制了呼吸代谢途径(己糖单磷酸途径)中 G6PDH 的活性,同时也抑制了 DNA 聚合酶。此外,我们证明了控释纳米粒子(负载 ECO/Zn 的 NPT)具有合适的粒径(275.43nm)、多分散指数(PDI,0.254)、Zeta 电位(-31.12mV)和螯合率(42.3%)。傅里叶变换红外光谱仪(FT-IR)和拉曼光谱的结果证实 ECO 已成功包封在纳米粒子中。同时,抗菌实验结果表明,负载 ECO/Zn 的 NPT 比负载 ECO/zein 的纳米粒子具有更好的抗菌活性。最后,在果汁中的应用测试表明,负载 ECO/Zn 的 NPT 对果汁的理化性质没有显著影响,在果汁保鲜方面具有潜在的应用前景。