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Application of liquid chromatography coupled to time-of-flight mass spectrometry separation for rapid assessment of toxins in Amanita mushrooms

机译:液相色谱结合飞行时间质谱分离技术快速评估鹅膏菌蘑菇中的毒素

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Detection of unexpected contaminants in complex matrices such as food is fraught with challenges. Scientists undertaking targeted analysis will normally have sufficient time, well characterised methods at their disposal and adequate supplies of calibration standards and quality control materials. However, when faced with an unusual request, for example to rapidly detect compounds for which calibration standards are not readily available, a more generic approach may have to be used. Modern analytical approaches such as LC-UV-ToF have potential to undertake non-targeted analyses and an example is reported here in which selected mushroom toxins have been analysed and semi-quantitative measurements performed. A method was rapidly established for the detection and measurement of amatoxin and phallotoxin classes of oligo-peptide toxins in mushrooms using chromatography and time-of-flight (ToF) mass spectrometry and ultra-violet (UV)-semiquantitation techniques. Using authenticated mushrooms, a chromatographic profile for death cap mushrooms Amanita phalloides has been established and a consistent profile noted across five UK sampling sites. Representative specimens of A. muscaria, A. rubescens and A. citrina were found to be free of these specific 22 toxins (ca. 1 mg kg?1). We estimate that 80% of the mushroom toxicity is associated with the amatoxins and using our experimental data, we extrapolate that ingestion of a single A. phalloides mushroom could indeed prove fatal. The extraction and detection method can be used to determine the accidental or malicious adulteration of food with mushroom tissues containing, amatoxins and phallotoxins but the approach has wider applications for the detection of unexpected chemicals in complex matrices and in assessing their impact on food safety...
机译:在诸如食品等复杂基质中检测出意料之外的污染物充满了挑战。进行有针对性的分析的科学家通常将有足够的时间,使用充分表征好的方法,并提供充足的校准标准品和质量控制材料。但是,当遇到不寻常的要求时,例如快速检测不易获得校准标准品的化合物时,可能必须使用更通用的方法。诸如LC-UV-ToF之类的现代分析方法具有进行非目标分析的潜力,此处报道了一个示例,其中已对选定的蘑菇毒素进行了分析并进行了半定量测量。快速建立了一种使用色谱和飞行时间(ToF)质谱法以及紫外(UV)半定量技术检测和测量蘑菇中寡肽毒素中的amatoxin和phallotoxin类的方法。使用经过验证的蘑菇,已经建立了死亡帽蘑菇伞形毒蕈的色谱图,并在英国的五个采样点发现了一致的图谱。发现穆斯卡氏菌,红曲霉和柑桔曲霉的代表性标本不含这些特定的22种毒素(<约1 mg kg?1)。我们估计蘑菇的毒性中有80%与阿莫毒素有关,并且使用我们的实验数据,我们推断摄入单个鬼笔棘蘑菇确实可以证明是致命的。提取和检测方法可用于确定含有蘑菇素组织,含阿托莫辛和鬼笔毒素的食品的意外掺假或恶意掺假,但该方法在检测复杂基质中的意外化学物质以及评估其对食品安全的影响方面具有更广泛的应用。 。

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