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采用三波长融合指纹图谱和电化学指纹图谱结合抗氧化活性分析对黑果腺肋花楸(Aronia melanocarpa)进行质量控制和评价。

Quality control and evaluation of Black chokeberry (Aronia melanocarpa) by three-wavelength fusion fingerprinting and electrochemical fingerprinting combined with antioxidant activity analysis.

机构信息

Department of Sport Medical, Institution of Sport and Health, Shenyang Sport College, No. 36, Jinqiansong East Road, Sujiatun District, Shenyang, Liaoning Province, China.

School of Pharm1acy, Shenyang Pharmaceutical University, Shenyang, Liaoning 110016, China.

出版信息

Food Chem. 2024 Aug 30;450:139303. doi: 10.1016/j.foodchem.2024.139303. Epub 2024 Apr 9.

Abstract

In this study, Black chokeberry (Aronia melanocarpa) was used as an example to provide reference for improving the safety, efficacy and quality consistency of homologous foods. In this study, two quality markers (Q-markers) of 27 batches of Black chokeberry were determined using high performance liquid chromatography (HPLC), and there were some differences among the 27 samples. Origin B samples had the highest levels of Q-markers for S15, and origin C had lower than average levels overall. Samples were analyzed qualitatively and quantitatively by Systematic Quantitative Fingerprinting (SQFM). Subsequently, a three-wavelength fusion analysis (TWFP) was established on the chromatographic data to compensate for the lack of a single wavelength. Fourteen batches of TWFP samples were rated at Level 5 or above in the SQFM assessment, indicating that there is some variation in the content of samples from different origins. Principal component analysis (PCA) was used to observe the differences in chemical composition and content of TWFP samples. Subsequently, electrochemical fingerprinting (ECFP) was established and nine characteristic parameters were recorded, showing that the samples were suppressed for all electrochemical Belousov-Zhabotinsky oscillation systems (B-Z oscillation systems). Finally, antioxidant tests were performed using DPPH. The antioxidant capacity was predicted using Partial Least Squares (PLS) analysis with RY = 0.84, Q = 0.77, a good model fit and accurate prediction. The fingerprint-potency relationship between IC-peak area showed that 17 of the 19 shared peaks were negatively correlated, indicating that 17 peaks contributed significantly to the antioxidant. The methods established in this study for the determination of TWFP and ECFP, as well as the spectral relationships with peak area and IC, can be used for the quality inspection and antioxidant capacity test of Black chokeberry, which provides a new research direction for improving the quality standard of medicinal and foodstuffs.

摘要

在本研究中,以黑果腺肋花楸(Aronia melanocarpa)为例,为提高同源食品的安全性、功效和质量一致性提供参考。本研究采用高效液相色谱法(HPLC)测定了 27 批黑果腺肋花楸的 2 种质量标志物(Q-标志物),27 个样品之间存在一定差异。B 产地的 S15 Q-标志物含量最高,C 产地总体水平较低。采用系统定量指纹图谱(SQFM)对样品进行定性和定量分析。随后,对色谱数据进行三波长融合分析(TWFP),以弥补单一波长的不足。在 SQFM 评价中,有 14 批 TWFP 样品达到 5 级或以上水平,表明不同产地样品含量存在一定差异。主成分分析(PCA)用于观察 TWFP 样品化学成分和含量的差异。随后,建立电化学指纹图谱(ECFP)并记录 9 个特征参数,表明所有电化学Belousov-Zhabotinsky 振荡体系(B-Z 振荡体系)对样品均有抑制作用。最后,采用 DPPH 进行抗氧化试验。采用偏最小二乘法(PLS)分析对抗氧化能力进行预测,RY=0.84,Q=0.77,模型拟合度和预测准确性较好。IC 峰面积指纹-效关系表明,19 个共有峰中有 17 个呈负相关,表明 17 个峰对抗氧化作用贡献较大。本研究建立的 TWFP 和 ECFP 测定方法,以及峰面积和 IC 的光谱关系,可用于黑果腺肋花楸的质量检验和抗氧化能力测试,为提高药食同源食品的质量标准提供了新的研究方向。

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