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首页> 外文期刊>Toxins >Unravelling the Diversity of the Cyclopiazonic Acid Family of Mycotoxins in Aspergillus flavus by UHPLC Triple-TOF HRMS
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Unravelling the Diversity of the Cyclopiazonic Acid Family of Mycotoxins in Aspergillus flavus by UHPLC Triple-TOF HRMS

机译:通过UHPLC Triple-TOF HRMS揭示黄曲霉中霉菌毒素的环松果酸家族的多样性

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Cyclopiazonic acid (α-cyclopiazonic acid, α-CPA) is an indole-hydrindane-tetramic acid neurotoxin produced by various fungal species, including the notorious food and feed contaminant Aspergillus flavus . Despite its discovery in A. flavus cultures approximately 40 years ago, its contribution to the A. flavus mycotoxin burden is consistently minimized by our focus on the more potent carcinogenic aflatoxins also produced by this fungus. Here, we report the screening and identification of several CPA-type alkaloids not previously found in A. flavus cultures. Our identifications of these CPA-type alkaloids are based on a dereplication strategy involving accurate mass high resolution mass spectrometry data and a careful study of the α-CPA fragmentation pattern. In total, 22 CPA-type alkaloids were identified in extracts from the A. flavus strains examined. Of these metabolites, 13 have been previously reported in other fungi, though this is the first report of their existence in A. flavus . Two of our metabolite discoveries, 11,12-dehydro α-CPA and 3-hydroxy-2-oxo CPA, have never been reported for any organism. The conspicuous presence of CPA and its numerous derivatives in A. flavus cultures raises concerns about the long-term and cumulative toxicological effects of these fungal secondary metabolites and their contributions to the entire A. flavus mycotoxin problem.
机译:Cyclopiazonic acid(α-cyclopiazonicacid,α-CPA)是由各种真菌物种(包括臭名昭著的食品和饲料污染物黄曲霉)产生的吲哚-茚满-四氢呋喃酸神经毒素。尽管大约在40年前就在黄曲霉菌培养物中发现了它,但由于我们一直关注这种真菌产生的更有效的致癌性黄曲霉毒素,因此其对黄曲霉菌毒素负担的贡献一直最小化。在这里,我们报告筛选和鉴定以前在黄曲霉培养物中未发现的几种CPA型生物碱。我们对这些CPA型生物碱的鉴定基于重复复制策略,该策略涉及准确的质谱高分辨率质谱数据和对α-CPA片段化模式的仔细研究。总共从所检查的黄曲霉菌株的提取物中鉴定出22种CPA型生物碱。在这些代谢物中,以前有13种在其他真菌中被报道过,尽管这是它们在黄曲霉中的首次报道。我们从未发现过两种代谢物的发现,即11,12-脱氢α-CPA和3-羟基-2-氧代CPA。 CPA及其大量衍生物在黄曲霉培养物中的显着存在引起人们对这些真菌次生代谢产物的长期和累积毒理作用及其对整个黄曲霉霉菌毒素问题的贡献的关注。

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