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食用蕈菌去除黄曲霉毒素 B 及其机制。

Removal of Aflatoxin B by Edible Mushroom-Forming Fungi and Its Mechanism.

机构信息

Department of Integrated Biomedical and Life Science, Korea University, Seoul 02841, Korea.

Department of Food and Nutrition, Hanyang University, Seoul 04763, Korea.

出版信息

Toxins (Basel). 2021 Sep 18;13(9):668. doi: 10.3390/toxins13090668.

Abstract

Aflatoxins (AFs) are biologically active toxic metabolites, which are produced by certain toxigenic sp. on agricultural crops. In this study, five edible mushroom-forming fungi were analyzed using high-performance liquid chromatography fluorescence detector (HPLC-FLD) for their ability to remove aflatoxin B (AFB), one of the most potent naturally occurring carcinogens known. and showed the most significant AFB removal activities (96.3% and 100%, respectively) among five strains after 14-day incubation. The cell lysate from exhibited higher AFB removal activity (35%) than the cell-free supernatant (13%) after 1-day incubation and the highest removal activity (80%) after 5-day incubation at 40 °C. In addition, AFB analyses using whole cells, cell lysates, and cell debris from showed that cell debris had the highest AFB removal activity at 5th day (95%). Moreover, exopolysaccharides from showed an increasing trend (24-48%) similar to whole cells and cell lysates after 5- day incubation. Our results strongly suggest that AFB removal activity by whole cells was mainly due to AFB binding onto cell debris during early incubation and partly due to binding onto cell lysates along with exopolysaccharides after saturation of AFB binding process onto cell wall components.

摘要

黄曲霉毒素(AFs)是生物活性的有毒代谢物,由某些产毒真菌在农作物上产生。在这项研究中,使用高效液相色谱荧光检测器(HPLC-FLD)分析了五种可食用的蘑菇形成真菌,以评估它们去除黄曲霉毒素 B(AFB)的能力,AFB 是已知最有效的天然致癌物质之一。在 14 天的孵育后,和 表现出最强的 AFB 去除活性(分别为 96.3%和 100%)。在 1 天孵育后,细胞裂解物的 AFB 去除活性(35%)高于无细胞上清液(13%),在 40°C 孵育 5 天时,去除活性最高(80%)。此外,对 全细胞、细胞裂解物和细胞碎片中的 AFB 分析表明,在第 5 天时,细胞碎片具有最高的 AFB 去除活性(95%)。此外,在 5 天的孵育后,细胞碎片的胞外多糖显示出与全细胞和细胞裂解物相似的增加趋势(24-48%)。我们的研究结果强烈表明,全细胞的 AFB 去除活性主要归因于在早期孵育过程中 AFB 与细胞碎片结合,部分归因于在细胞壁成分的 AFB 结合过程饱和后与细胞裂解物和胞外多糖结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0aca/8473272/e1a63ef92f91/toxins-13-00668-g001.jpg

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