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Pyrolytic behaviour of microcystins and microcystin-spiked algal blooms

机译:微囊藻毒素和微囊藻毒素掺入的藻华的热解行为

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This work describes the pyrolytic behaviour of microcystin (MC) standards using both conventional analytical pyrolysis (Py-GC-MS) and thermochemolysis with tetramethylammonium hydroxide (TMAH). In both cases, the pyrolytic patterns of the MCs at low pyrolysis temperature were structure-dependant, which confirms that pyrolytic techniques are suitable to readily distinguish between different types of MCs. However, the different types of amino acids conforming the structure of the MCs were distinguished only after TMAH/thermo-chemolysis. In order to examine the suitability of such techniques as a potential tool in the analysis of MC in cyanobacterial algae blooms, pyrolytic experiments using cyanobacterial cultures spiked with the microcystin LR (MC-LR) were also performed. The results suggest that pyrolytic techniques could be used for the rapid and safe detection of toxins in cyanobacterial blooms. Although promissory, further work directed to technique optimization would be necessary before this methodology is used as a routine detection method.
机译:这项工作描述了使用常规分析热解(Py-GC-MS)和氢氧化四甲基铵(TMAH)进行热化学分解的微囊藻毒素(MC)标准品的热解行为。在这两种情况下,在低热解温度下MC的热解模式均与结构有关,这证实了热解技术适合​​于容易地区分不同类型的MC。但是,只有在TMAH /热化学分解后才能区分出符合MC结构的不同类型的氨基酸。为了检验此类技术作为分析蓝藻藻华中MC的潜在工具的适用性,还进行了使用掺入了微囊藻毒素LR(MC-LR)的蓝细菌培养物的热解实验。结果表明,热解技术可用于快速,安全地检测蓝藻水华中的毒素。尽管是偶然的,但在将这种方法用作常规检测方法之前,有必要针对技术优化进行进一步的工作。

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