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Intensification of Polyphenol Extraction from Olive Leaves Using Ired-Irrad® an Environmentally-Friendly Innovative Technology

机译:使用环保创新技术Ired-Irrad®强化从橄榄叶中提取多酚

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摘要

Optimization of infrared-assisted extraction was conducted using Response Surface Methodology (RSM) in order to intensify polyphenol recovery from olive leaves. The extraction efficiency using Ired-Irrad®, a newly-patented infrared apparatus (IR), was compared to water bath (WB) conventional extraction. Under optimal conditions, as suggested by the model and confirmed experimentally, the total phenolic content yield was enhanced by more than 30% using IR as contrasted to WB, which even required 27% more ethanol consumption. High Performance Liquid Chromatography analyses quantified the two major phenolic compounds of the leaves: Oleuropein and hydroxytyrosol, which were both intensified by 18% and 21%, respectively. IR extracts increased the antiradical activity by 25% and the antioxidant capacity by 51% compared to WB extracts. On the other hand, extracts of olive leaves obtained by both techniques exhibited equal effects regarding the inhibition of 20 strains of Staphylococcus aureus, with a minimum inhibitory concentration (MIC) varying between 3.125 and 12.5 mg/mL. Similarly, both extracts inhibited Aflatoxin B1 (AFB1) secretion by Aspergillus flavus, with no growth inhibition of the fungus. Finally, optimization using RSM allowed us to suggest other IR operating conditions aiming at significantly reducing the consumption of energy and solvent, while maintaining similar quantity and quality of phenolic compounds as what is optimally obtained using WB.
机译:为了增强从橄榄叶中回收的多酚,使用响应表面法(RSM)进行了红外辅助提取的优化。将使用Ired-Irrad ®(一种新专利的红外设备(IR))的提取效率与水浴(WB)常规提取进行了比较。在最佳条件下,如模型所建议并通过实验证实,与WB相比,使用IR可使总酚含量提高30%以上,而WB甚至需要多消耗27%的乙醇。高效液相色谱分析定量了叶片中的两种主要酚类化合物:油橄榄苦苷和羟基酪醇,它们分别被增强了18%和21%。与WB提取物相比,IR提取物的抗自由基活性提高了25%,抗氧化能力提高了51%。另一方面,通过两种技术获得的橄榄叶提取物在抑制20株金黄色葡萄球菌方面表现出相同的效果,最小抑制浓度(MIC)在3.125和12.5 mg / mL之间变化。同样,两种提取物均抑制黄曲霉分泌黄曲霉毒素B1(AFB1),而没有真菌的生长抑制作用。最后,使用RSM进行的优化使我们能够提出其他IR操作条件,旨在显着减少能源和溶剂的消耗,同时保持与使用WB最佳获得的酚类化合物相同的数量和质量。

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