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海砂崩解法与离子对固相萃取组合用于 HPLC 测定前植物中绿原酸的有效分离与纯化。

Combination of Sea Sand Disruption Method and Ion-Pair Solid-Phase Extraction for Effective Isolation and Purification of Chlorogenic Acid from Plants Prior to the HPLC Determination.

机构信息

Department of Chromatography, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Skłodowska University in Lublin, Pl. Maria Curie-Skłodowska 3, 20-031 Lublin, Poland.

出版信息

Molecules. 2022 Aug 31;27(17):5601. doi: 10.3390/molecules27175601.

Abstract

Chlorogenic acid (CQA) is one of phenolics commonly found in higher plants, possessing numerous health-promoting effects on humans. Unfortunately, it is easily degraded/transformed into other substances during extraction. Therefore, its reliable analysis requires a special approach that does not involve high temperatures. This paper presents a very simple method of CQA isolation using the sea sand disruption method with subsequent purification of the extract using the ion-pair solid-phase extraction process, followed by HPLC-DAD detection. It was found that control of the ion pairing reagent concentration and sample pH is crucial to improve purification, and that the best results, with recovery exceeding 98%, were obtained for 0.05 M tetrabutylammonium bisulfate at pH 7 when the ion pairs were formed directly in the extract and eluted from the C18 sorbent using an acidified methanol-water mixture. The practical potential of the developed procedure was verified by using it for CQA isolation from different plants. The approach represents one of the contemporary analytical trends and current advances in the solid phase extraction, in which several sorption extraction techniques are combined to ensure high-quality analytical results.

摘要

绿原酸(CQA)是高等植物中常见的酚类化合物之一,对人体具有多种促进健康的作用。然而,在提取过程中,它很容易降解/转化为其他物质。因此,其可靠的分析需要一种不涉及高温的特殊方法。本文提出了一种非常简单的 CQA 分离方法,使用海砂破坏法,随后使用离子对固相萃取法对提取物进行纯化,再用 HPLC-DAD 检测。结果发现,控制离子对试剂浓度和样品 pH 值对于提高纯化效果至关重要,当在提取物中直接形成离子对并使用酸化甲醇-水混合物从 C18 吸附剂洗脱时,最佳结果为 0.05 M 四丁基硫酸氢铵在 pH 7 时,回收率超过 98%。通过使用该方法从不同植物中分离 CQA,验证了所开发方法的实际潜力。该方法代表了当前固相萃取中的一种分析趋势和最新进展,其中结合了多种吸附萃取技术,以确保高质量的分析结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bf8/9458169/95d15aa83e39/molecules-27-05601-g001.jpg

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