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SDS-PAGE蛋白质和HPTLC多酚分析:一种用于鉴定黄花蜂蜜的有前景的工具

SDS-PAGE Protein and HPTLC Polyphenols Profiling as a Promising Tool for Authentication of Goldenrod Honey.

作者信息

Dżugan Małgorzata, Miłek Michał, Kielar Patrycja, Stępień Karolina, Sidor Ewelina, Bocian Aleksandra

机构信息

Department of Chemistry and Food Toxicology, Institute of Food Technology and Nutrition, University of Rzeszow, Ćwiklińskiej 1a, 35-601 Rzeszow, Poland.

Department of Biology, Institute of Biology and Biotechnology, University of Rzeszow, Zelwerowicza 4, 35-601 Rzeszow, Poland.

出版信息

Foods. 2022 Aug 9;11(16):2390. doi: 10.3390/foods11162390.

Abstract

The aim of the study was to use protein and polyphenolic profiles as fingerprints of goldenrod honey and to apply them for verification of the labeled variety. The markers for 10 honey samples were correlated with the standard physicochemical parameters and biological activity measured in vitro as antioxidant, antifungal and antibacterial activities. Honey proteins were examined regarding soluble protein, diastase and SDS-PAGE protein profile. The polyphenolic profile was obtained with the use of the HPTLC and the antioxidant activity was detected with standard colorimetric methods. The antimicrobial effect of representative honey samples of different chemical profiles was verified against and budding yeast. It was found that the SDS-PAGE technique allows for creating the protein fingerprint of the goldenrod honey variety which was consistent for 70% of tested samples. At the same time, the similarity of their polyphenolic profile was observed. Moreover, specific chemical composition resulted in higher bioactivity of honey against tested bacteria and yeast. The study confirmed the usefulness of both SDS-PAGE and HPTLC techniques in honey authentication, as an initial step for selection of samples which required pollen analysis.

摘要

该研究的目的是将蛋白质和多酚谱作为一枝黄花蜂蜜的指纹图谱,并将其用于验证标签品种。10个蜂蜜样品的标记物与标准理化参数以及体外测量的生物活性(如抗氧化、抗真菌和抗菌活性)相关。对蜂蜜蛋白质进行了可溶性蛋白、淀粉酶和SDS-PAGE蛋白谱分析。使用HPTLC获得多酚谱,并通过标准比色法检测抗氧化活性。针对不同化学谱的代表性蜂蜜样品对 和出芽酵母的抗菌效果进行了验证。发现SDS-PAGE技术可以创建一枝黄花蜂蜜品种的蛋白质指纹图谱,70%的测试样品结果一致。同时,观察到它们多酚谱的相似性。此外,特定的化学成分导致蜂蜜对测试细菌和酵母具有更高的生物活性。该研究证实了SDS-PAGE和HPTLC技术在蜂蜜鉴定中的有用性,作为选择需要进行花粉分析的样品的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff7c/9407375/e9117021480e/foods-11-02390-g001.jpg

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