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从可可多酚提取物中制备分离原花青素:不同分级技术的比较研究。

Preparative Separation of Procyanidins from Cocoa Polyphenolic Extract: Comparative Study of Different Fractionation Techniques.

机构信息

School of Chemical Engineering, Food Science & Technology Research Center (CICTA), Universidad Industrial de Santander, Carrera 27, Calle 9, Bucaramanga 68002, Colombia.

Foodomics Laboratory, Institute of Food Science Research (CIAL, CSIC-UAM), Nicolás Cabrera 9, 28049 Madrid, Spain.

出版信息

Molecules. 2020 Jun 19;25(12):2842. doi: 10.3390/molecules25122842.

Abstract

To provide further insight into the antioxidant potential of procyanidins (PCs) from cocoa beans, PC extract was fractionated by several methodologies, including solid phase extraction, Sephadex LH-20 gel permeation, and preparative HPLC using C18 and diol stationary phases. All the isolated fractions were analyzed by UHPLC-QTOF-MS to determine their relative composition. According to our results, classical techniques allowed good separation of alkaloids, catechins, dimers, and trimers, but were inefficient for oligomeric PCs. Preparative C18-HPLC method allowed the attainment of high relative composition of fractions enriched with alkaloids, catechins, and PCs with degree of polymerization (DP) < 4. However, the best results were obtained by preparative diol-HPLC, providing a separation according to the increasing DP. According to the mass spectrometry fragmentation pattern, the nine isolated fractions (Fractions II-X) consisted of exclusively individual PCs and their corresponding isomers (same DP). In summary, an efficient, robust, and fast method using a preparative diol column for the isolation of PCs is proposed. Regarding DPPH and ABTS scavenging activity, it increases according to the DP; therefore, the highest activity was for cocoa extract > PCs > monomers. Thereby, cocoa procyanidins might be of interest to be used as alternative antioxidants.

摘要

为了更深入地了解可可豆中原花青素(PCs)的抗氧化潜力,采用多种方法对 PC 提取物进行了分级,包括固相萃取、Sephadex LH-20 凝胶渗透和 C18 和二醇固定相的制备 HPLC。所有分离的馏分均通过 UHPLC-QTOF-MS 进行分析,以确定其相对组成。根据我们的结果,经典技术可以很好地区分生物碱、儿茶素、二聚体和三聚体,但对低聚 PC 效果不佳。制备型 C18-HPLC 方法可以获得高相对组成的富含生物碱、儿茶素和聚合度(DP)<4 的 PC 馏分。然而,通过制备型二醇-HPLC 可获得最佳结果,可根据 DP 进行分离。根据质谱裂解模式,分离得到的九个馏分(馏分 II-X)仅由单独的 PC 及其相应的异构体(相同 DP)组成。总之,提出了一种使用制备型二醇柱分离 PC 的高效、稳健、快速的方法。就 DPPH 和 ABTS 清除活性而言,其活性随 DP 增加而增加;因此,最高活性的是可可提取物>PCs>单体。因此,可可原花青素可能作为替代抗氧化剂具有应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9247/7356151/e36dbe0cb102/molecules-25-02842-g001.jpg

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