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利用新型分离工艺优化甜茴香籽和罗勒叶超细粉的植物化学成分特征和抗氧化性能。

Optimisation of phytochemical characteristics and antioxidative properties of Foeniculum vulgare Mill. seeds and Ocimum basilicum L. leaves superfine powders using new parting process.

机构信息

LCP-A2MC (Laboratoire de Chimie et Physique - Approche Multi-échelles des milieux Complexes), Université de Lorraine, 1, Boulevard Arago, Metz Cedex 03, 57078, France.

AGRITECH-France, 4, Rue Piroux, 54000, Nancy, France.

出版信息

Phytochem Anal. 2020 Mar;31(2):154-163. doi: 10.1002/pca.2875. Epub 2019 Jul 31.

Abstract

INTRODUCTION

Fennel (Foeniculum vulgare Mill.) and basil (Ocimum basilicum L.) are two aromatic medicinal plants. Recently, a new parting process which is named CDS "Comminution and to control Diffraction Sieving" is taken into consideration and its positive effect on the extraction of bioactive compounds from the plants, without any solvent, is reported.

OBJECTIVE

Study the effect of CDS on phytochemical properties of superfine powders of fennel seeds and basil leaves.

METHODS

Fennel seeds and basil leaves superfine powders were fractionated as follows: 100-180 μm, 180-315 μm, 315-500 μm, > 500 μm and unsieved superfine powders. Extraction of polyphenols was carried out using hydromethanolic maceration. The essential oils were extracted by maceration with dichloromethane. The antioxidant activities were evaluated by DPPH (2,2-diphenyl-1-picrylhydrazyl) assay. Using liquid chromatography ultraviolet electrospray ionisation mass spectrometry (LC-UV-ESI-MS), concentrations of characterised phenolic compounds were measured. The essential oils compositions were characterised using gas chromatography mass spectrometry (GC-MS).

RESULTS

In fennel seeds, the 100-180 μm fraction had maximum antioxidant activity and LC-UV-ESI-MS analyses proved that the best extraction of certain polyphenols was obtained in the 100-180 μm fraction. In basil leaves, the best antioxidant activity corresponded to the 315-500 μm fraction and LC-UV-ESI-MS analyses showed that the polyphenols were concentrated in the < 315 μm fractions. For both plants, GC-MS presented that the essential oils were concentrated in the 315-500 μm fraction.

CONCLUSION

CDS as a new green parting process leads to improve the phytochemical properties of these two superfine plant powders in the specific granulometric classes.

摘要

简介

茴香(Foeniculum vulgare Mill.)和罗勒(Ocimum basilicum L.)是两种芳香药用植物。最近,一种新的分离工艺 CDS“粉碎和控制衍射筛分”被提出,并报道了其在不使用任何溶剂的情况下从植物中提取生物活性化合物的积极作用。

目的

研究 CDS 对茴香籽和罗勒叶超细微粉的植物化学性质的影响。

方法

将茴香籽和罗勒叶超细微粉按以下方式分级:100-180μm、180-315μm、315-500μm、>500μm 和未筛分的超细微粉。多酚的提取采用水-甲醇浸提。精油采用二氯甲烷浸提法提取。采用 DPPH(2,2-二苯基-1-苦基肼)法评价抗氧化活性。采用液相色谱紫外电喷雾离子化质谱法(LC-UV-ESI-MS)测定特征酚类化合物的浓度。采用气相色谱质谱法(GC-MS)对精油的组成进行了表征。

结果

在茴香籽中,100-180μm 级分具有最大的抗氧化活性,LC-UV-ESI-MS 分析证明,在 100-180μm 级分中获得了某些多酚的最佳提取。在罗勒叶中,最佳抗氧化活性对应于 315-500μm 级分,LC-UV-ESI-MS 分析表明,多酚集中在<315μm 级分中。对于这两种植物,GC-MS 表明精油集中在 315-500μm 级分中。

结论

CDS 作为一种新的绿色分离工艺,可以提高这两种超细微粉在特定粒度级别的植物化学性质。

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