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蜂胶的芬芳气息。

The Scent of Antifungal Propolis.

机构信息

Department of Public Health Medicine, Medical School, University of Pécs, Szigeti út, 12, 7624 Pécs, Hungary.

Department of General and Environmental Microbiology, Institute of Biology, University of Pécs, Ifjúság u, 6, 7624 Pécs, Hungary.

出版信息

Sensors (Basel). 2021 Mar 27;21(7):2334. doi: 10.3390/s21072334.

Abstract

Propolis contains many effective antifungal compounds that have not yet been identified and evaluated. In addition, distinguishing samples of propolis with high antifungal activity from less active ones would be beneficial for effective therapy. Propolis samples were collected from four different geographical regions in Hungary and used to prepare ethanol extracts for analysis. First, an antifungal susceptibility test was performed on . Then, gas chromatography-mass spectrometry (GC-MS) and an opto-electronic nose were applied for the classification of propolis samples. In three propolis samples, the IC was measured between 72 and 134 µg/mL, but it was not calculable in the fourth sample. GC-MS analysis of the four propolis samples identified several compounds belonging to the various chemical classes. In the antifungal samples, the relative concentration of 11,14-eicosadienoic acid was the highest. Based on the opto-electronic electronic nose measurements, 98.4% of the original grouped antifungal/non-antifungal cases were classified correctly. We identified several molecules from propolis with potential antifungal properties. In addition, this is the first report to demonstrate the usefulness of a portable opto-electronic nose to identify propolis samples with high antifungal activity. These results may contribute to the rapid and efficient selection of new fungicide-candidate molecules and effective propolis samples for treatment.

摘要

蜂胶含有许多尚未被识别和评估的有效抗真菌化合物。此外,区分具有高抗真菌活性和低活性的蜂胶样品将有助于有效的治疗。蜂胶样品取自匈牙利的四个不同地理区域,并用于制备乙醇提取物进行分析。首先,对进行了抗真菌药敏试验。然后,应用气相色谱-质谱(GC-MS)和光电鼻对蜂胶样品进行分类。在三个蜂胶样品中,IC 值在 72 到 134µg/mL 之间,但第四个样品无法计算。对四个蜂胶样品的 GC-MS 分析鉴定了属于不同化学类别的几种化合物。在抗真菌样品中,11,14-二十碳二烯酸的相对浓度最高。基于光电鼻的测量,98.4%的原始分组抗真菌/非抗真菌病例被正确分类。我们从具有潜在抗真菌特性的蜂胶中鉴定出几种分子。此外,这是首次报告证明便携式光电鼻可用于识别具有高抗真菌活性的蜂胶样品。这些结果可能有助于快速有效地选择新的候选杀真菌剂分子和有效的蜂胶样品进行治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0015/8037689/00767bdf21af/sensors-21-02334-g001.jpg

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