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优化超声辅助提取法用于从洋葱鳞茎中回收总酚类化合物和花青素的研究进展

Development of Optimized Ultrasound-Assisted Extraction Methods for the Recovery of Total Phenolic Compounds and Anthocyanins from Onion Bulbs.

作者信息

González-de-Peredo Ana V, Vázquez-Espinosa Mercedes, Espada-Bellido Estrella, Ferreiro-González Marta, Carrera Ceferino, Barbero Gerardo F, Palma Miguel

机构信息

Department of Analytical Chemistry, Faculty of Sciences, Agrifood Campus of International Excellence (ceiA3), IVAGRO, University of Cadiz, Puerto Real, 11510 Cadiz, Spain.

出版信息

Antioxidants (Basel). 2021 Nov 3;10(11):1755. doi: 10.3390/antiox10111755.

Abstract

L. is one of the most abundant vegetable crops worldwide. In addition to its versatile culinary uses, onion also exhibits quite interesting medicinal uses. Bulbs have a high content of bioactive compounds that are beneficial for human health. This study intends to develop and optimize two appropriate ultrasound-assisted methods for the extraction of the phenolic compounds and anthocyanins present in red onion. A response surface methodology was employed and, specifically, a Box-Behnken design, for the optimization of the methods. The optimal conditions for the extraction of the phenolic compounds were the follows: 53% MeOH as solvent, pH 2.6, 60 °C temperature, 30.1% amplitude, 0.43 s cycle, and 0.2:11 g sample/mL solvent ratio. On the other hand, the optimal conditions for the anthocyanins were as follows: 57% MeOH as solvent, pH 2, 60 °C temperature, 90% amplitude, 0.64 s cycle, and 0.2:15 g sample/mL solvent ratio. Both methods presented high repeatability and intermediate precision, as well as short extraction times with good recovery yields. These results illustrate that the use of ultrasound-assisted extraction, when properly optimized, is suitable for the extraction and quantification of the compounds of interest to determine and improve the quality of the raw material and its subproducts for consumers.

摘要

洋葱是全球最丰富的蔬菜作物之一。除了其广泛的烹饪用途外,洋葱还具有相当有趣的药用价值。鳞茎含有高含量的生物活性化合物,对人体健康有益。本研究旨在开发和优化两种合适的超声辅助方法,用于提取红洋葱中存在的酚类化合物和花青素。采用了响应面法,具体而言,采用Box-Behnken设计来优化这些方法。酚类化合物提取的最佳条件如下:53%甲醇作为溶剂,pH值2.6,温度60°C,振幅30.1%,周期0.43秒,样品/溶剂比例0.2:11克/毫升。另一方面,花青素的最佳条件如下:57%甲醇作为溶剂,pH值2,温度60°C,振幅90%,周期0.64秒,样品/溶剂比例0.2:15克/毫升。两种方法都具有高重复性和中等精密度,以及较短的提取时间和良好的回收率。这些结果表明,当适当优化时,超声辅助提取适用于提取和定量目标化合物,以确定和提高原材料及其副产品对消费者的质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce62/8614850/cd990e85c8f8/antioxidants-10-01755-g001.jpg

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