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杨梅素的深共熔溶剂萃取及其抗氧化性能

Deep eutectic solvent extraction of myricetin and antioxidant properties.

作者信息

Liu Junhai, Guo Xiaosha, Miao Qiaowei, Ji Xiaohui, Liang Yinku, Tong Tianjiao

机构信息

Shaanxi Key Laboratory of Catalysis, School of Chemistry and Environment Science, Shaanxi University of Technology Hanzhong 723000 P.R. China.

出版信息

RSC Adv. 2024 Jun 6;14(26):18126-18135. doi: 10.1039/d4ra01438c.

Abstract

In this study, a response surface method (RSM) was used to optimise the ultrasonic-assisted deep eutectic solvent (DES) extraction of myricetin from myricetin leaves. The results demonstrated that the DES-5 (choline chloride-oxalic acid) system exhibited better extraction results than the other seven DESs prepared. The optimum extraction conditions for myricetin were a DES-5 system with 19% water content of DES, a liquid-to-solid ratio of 37 : 1 mL g, an extraction time of 45 min, and an extraction temperature of 72 °C. Under these conditions, the extraction amount of myricetin was 22.47 mg g. To optimise the extraction process, the crude myricetin extract was purified, and the optimal conditions were as follows: an AB-8 macroporous adsorption resin was used with an anhydrous ethanol desorption agent. The adsorption rate was 1 BV per h (bed volume per hour), the desorption rate was 1 BV per h, and the desorption capacity was 2 BV (bed volume). The antioxidant properties of the myricetin were also investigated. The results demonstrated that, with an increase in concentration, the scavenging rates of DPPH and ˙OH free radicals increased. Compared to Vc, myricetin had a better scavenging ability for DPPH free radicals, whereas purified myricetin had a better antioxidant effect. At the same concentration, the radical-scavenging rate of the ˙OH radical was slightly higher in myricetin purified by the macroporous adsorption resin than in Vc, and that of the unpurified myricetin was the smallest. Myricetin was purified using a macroporous adsorption resin to improve its antioxidant properties.

摘要

在本研究中,采用响应面法(RSM)优化了超声辅助深共熔溶剂(DES)从杨梅叶中提取杨梅素的工艺。结果表明,DES-5(氯化胆碱-草酸)体系的提取效果优于所制备的其他七种DES。杨梅素的最佳提取条件为:DES-5体系,DES含水量19%,液固比37∶1 mL/g,提取时间45 min,提取温度72℃。在此条件下,杨梅素的提取量为22.47 mg/g。为优化提取工艺,对粗杨梅素提取物进行了纯化,最佳条件如下:采用AB-8大孔吸附树脂,用无水乙醇作解吸剂。吸附速率为每小时1床体积(BV),解吸速率为每小时1 BV,解吸量为2 BV。还研究了杨梅素的抗氧化性能。结果表明,随着浓度的增加,DPPH和·OH自由基的清除率升高。与Vc相比,杨梅素对DPPH自由基的清除能力更强,而纯化后的杨梅素具有更好的抗氧化效果。在相同浓度下,大孔吸附树脂纯化的杨梅素对·OH自由基的清除率略高于Vc,未纯化的杨梅素清除率最小。采用大孔吸附树脂对杨梅素进行纯化以提高其抗氧化性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e84/11155444/f6af925a5781/d4ra01438c-f1.jpg

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