Deep eutectic solvent-homogenate based microwave-assisted hydrodistillation of essential oil from Litsea cubeba (Lour.) Pers. fruits and its chemical composition and biological activity

•Deep eutectic solvent (DES) was used to distillate essential oil (EO).•DES-homogenate based microwave-assisted hydrodistillation was developed.•m-Cymene and trans-linalool oxide were the major components of Litsea cubeba EO.•Higher isolation efficiency and antioxidant activity of EO were obtained....

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Veröffentlicht in:Journal of Chromatography A 2021-06, Vol.1646, p.462089, Article 462089
Hauptverfasser: Guo, Yu, Li, Yan, Li, Zhuang, Jiang, Li, Cao, Xifeng, Gao, Wenbin, Wang, Jun, Luo, Duqiang, Chen, Fengli
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Sprache:eng
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Zusammenfassung:•Deep eutectic solvent (DES) was used to distillate essential oil (EO).•DES-homogenate based microwave-assisted hydrodistillation was developed.•m-Cymene and trans-linalool oxide were the major components of Litsea cubeba EO.•Higher isolation efficiency and antioxidant activity of EO were obtained. As an important natural product, the sufficient separation of plant essential oil (EO) is helpful to improve its utilization value. In this work, deep eutectic solvent-homogenate based microwave-assisted hydrodistillation (DES-HMAHD) was developed and applied to isolate EO from the fruits of Litsea cubeba (Lour.) Pers. Different types of DES were investigated in terms of the EO kinetics and composition, among which oxalic acid/choline chloride (OA/ChCl) had obvious advantages. Following, molar ratio of OA and ChCl (1:1), water content (50%), liquid-solid ratio (12.5:1 mL/g), homogenate time (2 min), and microwave power (700 W) were found to be the optimum conditions. Gas chromatography-mass spectrometer (GC-MS) analysis showed that the EO isolated from DES-HMAHD contained a large proportion of m-cymene and trans-linalool oxide, which were quite different from the conventionally reported L. cubeba EO. In addition, the proposed DES-HMAHD resulted in higher separation efficiency and economic value, as well as lower environmental impact, as compared with other techniques. Afterwards, the EO isolated by different methods was evaluated from the perspective of biological activity. The EO obtained by DES-HMAHD showed higher antioxidant activity (DPPH and ABTS) but lower antifungal activity, which was related to its chemical composition. In general, DES-HMAHD produced a kind of L. cubeba EO with different components, which provided a scientific foundation for the sufficient isolation of plant EO and its application in the natural products.
ISSN:0021-9673
1873-3778
DOI:10.1016/j.chroma.2021.462089