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采用玉米醇溶蛋白纳米聚合物包埋桉叶油和山苍子精油:制备、表征、贮藏稳定性和抗真菌评价。

Encapsulation of eucalyptus and Litsea cubeba essential oils using zein nanopolymer: Preparation, characterization, storage stability, and antifungal evaluation.

机构信息

Federal University of Santa Catarina, Graduate Program in Engineering Chemistry, Department of Chemical and Food Engineering, Florianópolis, Santa Catarina, Brazil.

Federal University of Santa Catarina, Graduate Program in Plant Genetic Resources, Department of Plant Sciences, Florianópolis, Santa Catarina, Brazil.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 1):134690. doi: 10.1016/j.ijbiomac.2024.134690. Epub 2024 Aug 12.

Abstract

The encapsulation of essential oils (EOs) in protein-based biopolymeric matrices stabilized with surfactant ensures protection and physical stability of the EO against unfavorable environmental conditions. Accordingly, this study prepared zein nanoparticles loaded with eucalyptus essential oil (Z-EEO) and Litsea cubeba essential oil (Z-LEO), stable and with antifungal activity against Colletotrichum lindemuthianum, responsible for substantial damage to bean crops. The nanoparticles were prepared by nanoprecipitation with the aid of ultrasound treatment and characterized. The nanoparticles exhibited a hydrodynamic diameter close to 200 nm and PDI < 0.3 for 120 days, demonstrating the physical stability of the carrier system. Scanning electron microscopy and Transmission electron microscopy revealed that the nanoparticles were smooth and uniformly distributed spheres. Fourier-transform infrared spectroscopy showed interaction between zein and EOs through hydrogen bonding and hydrophobic interactions. Thermogravimetric analysis demonstrated the thermal stability of the nanoparticles compared to pure bioactive compounds. The nanoparticles exhibited a dose-dependent effect in inhibiting the fungus in in vitro testing, with Z-EEO standing out by inhibiting 70.0 % of the mycelial growth of C. lindemuthianum. Therefore, the results showed that zein has great potential to encapsulate hydrophobic compounds, improving the applicability of the bioactive compound as a biofungicide, providing protection for the EO.

摘要

将精油 (EO) 封装在由表面活性剂稳定的基于蛋白质的生物聚合物基质中,可确保 EO 免受不利环境条件的影响并保持其物理稳定性。因此,本研究制备了负载桉叶油 (Z-EEO) 和山苍子油 (Z-LEO) 的玉米醇溶蛋白纳米粒子,该纳米粒子稳定且具有抗炭疽病菌(导致豆类作物大量减产的病原菌)的活性。纳米粒子通过助超声纳米沉淀法制备,并对其进行了表征。纳米粒子在 120 天内表现出接近 200nm 的水动力学直径和<0.3 的 PDI,表明载体系统具有物理稳定性。扫描电子显微镜和透射电子显微镜显示纳米粒子为光滑且均匀分布的球体。傅里叶变换红外光谱显示了玉米醇溶蛋白和 EOs 之间通过氢键和疏水相互作用的相互作用。热重分析表明与纯生物活性化合物相比,纳米粒子具有更高的热稳定性。纳米粒子在体外测试中表现出对真菌的剂量依赖性抑制作用,其中 Z-EEO 尤为突出,抑制了炭疽病菌菌丝生长的 70.0%。因此,结果表明玉米醇溶蛋白具有封装疏水性化合物的巨大潜力,提高了生物活性化合物作为生物杀菌剂的适用性,为 EO 提供了保护。

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