Kechagias Achilleas, Leontiou Areti A, Vardakas Alexios, Stathopoulos Panagiotis, Xenaki Maria, Stathopoulou Panagiota, Proestos Charalampos, Giannelis Emmanuel P, Chalmpes Nikolaos, Salmas Constantinos E, Giannakas Aris E
Department of Food Science and Technology, University of Patras, 30100 Agrinio, Greece.
GAEA Products S.M. S.A., 1st km Agriniou-Karpenissiou National Rd., 30100 Agrinio, Greece.
Antioxidants (Basel). 2025 Aug 18;14(8):1010. doi: 10.3390/antiox14081010.
In this study, an innovative and sustainable strategy for the valorization of olive leaves, an underutilized agro-industrial byproduct, was developed through enzymatic-assisted aqueous extraction to produce a polyphenol-rich olive leaf extract (OLE). The extract contained notable concentrations of hydroxytyrosol (0.53 mg/L), luteolin-7-o-glucoside (0.70 mg/L), apigenin-4-o-glucoside (0.18 mg/L), and oleuropein (4.24 mg/L). For the first time, this OLE was successfully nanoencapsulated into layered double hydroxides (LDHs) synthesized at Zn/Al molar ratios of 1:1, 2:1, and 3:1, resulting in a series of OLE@LDH_Zn/Al_x/1 nanohybrids. Comprehensive structural characterization confirmed the successful intercalation of OLE within the LDH interlayer galleries. Antioxidant activity (via DPPH assay), total polyphenol content (TPC), and antibacterial tests were conducted to evaluate functionality. Among the nanohybrids, OLE@LDH_Zn/Al_1/1 exhibited the highest TPC (606.6 ± 7.0 mg GAE/L), the lowest EC, EC, and EC values (27.88 ± 1.82, 25.70 ± 0.76, and 39.42 ± 2.16 mg/mL), and superior antibacterial performance against and . Moreover, pH-dependent release revealed targeted polyphenol release under acidic conditions (pH = 1), simulating gastric environments. These results highlight LDHs, particularly with a Zn/Al ratio of 1:1, as promising nanocarriers for the stabilization and controlled release of plant-derived polar phenols, with potential applications in nutrition, food preservation, and biomedicine.
在本研究中,通过酶辅助水提取开发了一种创新且可持续的策略,用于将未充分利用的农业工业副产品橄榄叶进行增值利用,以生产富含多酚的橄榄叶提取物(OLE)。该提取物含有显著浓度的羟基酪醇(0.53毫克/升)、木犀草素-7-O-葡萄糖苷(0.70毫克/升)、芹菜素-4-O-葡萄糖苷(0.18毫克/升)和橄榄苦苷(4.24毫克/升)。首次成功地将这种OLE纳米封装到以锌/铝摩尔比为1:1、2:1和3:1合成的层状双氢氧化物(LDH)中,得到了一系列OLE@LDH_Zn/Al_x/1纳米杂化物。全面的结构表征证实了OLE成功插入LDH层间通道。通过DPPH测定法进行抗氧化活性、总多酚含量(TPC)和抗菌测试以评估其功能。在纳米杂化物中,OLE@LDH_Zn/Al_1/1表现出最高的TPC(606.6±7.0毫克GAE/升)、最低的EC、EC和EC值(27.88±1.82、25.70±0.76和39.42±2.16毫克/毫升),以及对和的优异抗菌性能。此外,pH依赖性释放显示出该多酚在酸性条件(pH = 1)下的靶向释放,模拟胃环境。这些结果突出了LDH,特别是锌/铝比为1:1的LDH,作为用于植物源极性酚类稳定化和控释的有前景的纳米载体,在营养、食品保存和生物医学中具有潜在应用。