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Structural Diversity Characterization and Toxicology of Microcystins

机译:微囊藻毒素的结构多样性特征与毒理学

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摘要

Hepatotoxic microcystins (MCs) are the most widespread class of cyanotoxins and the one that has most often been implicated in cyanobacterial toxicosis. One of the main challenges in studying and monitoring MCs is the great structural diversity within the class. The full chemical structure of the first MC was elucidated in the early 1980s and since then, the number of reported structural analogues has grown steadily and continues to do so, thanks largely to advances in analytical methodology. The structures of some of these analogues have been definitively elucidated after chemical isolation using a combination of techniques including nuclear magnetic resonance, amino acid analysis, and tandem mass spectrometry (MS/MS). Others have only been tentatively identified using liquid chromatography-MS/MS without chemical isolation. An understanding of the structural diversity of MCs, the genetic and environmental controls for this diversity and the impact of structure on toxicity are all essential to the ongoing study of MCs across several scientific disciplines. However, because of the diversity of MCs and the range of approaches that have been taken for characterizing them, comprehensive information on the state of knowledge in each of these areas can be challenging to gather. We have conducted an in-depth review of the literature surrounding the identification and toxicity of known MCs and present here a concise review of these topics. At present, at least 279 MCs have been reported and are tabulated here. Among these, about 20% (55 of 279) appear to be the result of chemical or biochemical transformations of MCs that can occur in the environment or during sample handling and extraction of cyanobacteria, including oxidation products, methyl esters, or post-biosynthetic metabolites. The toxicity of many MCs has also been studied using a range of different approaches and a great deal of variability can be observed between reported toxicities, even for the same congener. This review will help clarify the current state of knowledge on the structural diversity of MCs as a class and the impacts of structure on toxicity, as well as to identify gaps in knowledge that should be addressed in future research.
机译:肝毒性微囊藻毒素(MCs)是一类最广泛的蓝藻毒素,并且最常与蓝藻毒素中毒有关。学习和监视MC的主要挑战之一是班级内部的巨大结构多样性。 1980年代初阐明了首个MC的完整化学结构,此后,报告的结构类似物的数量一直稳定增长,并且在很大程度上要依靠分析方法的进步。在化学分离之后,已使用多种技术(包括核磁共振,氨基酸分析和串联质谱(MS / MS))的组合对这些类似物的某些结构进行了明确阐明。仅使用液相色谱-MS / MS初步鉴定了其他化合物,未进行化学分离。对MC的结构多样性,对该多样性的遗传和环境控制以及结构对毒性的影响的理解,对于跨多个科学学科对MC的持续研究都是必不可少的。但是,由于MC的多样性以及表征MC的方法范围广泛,因此收集这些领域中每个领域的知识状态的全面信息可能会很困难。我们对围绕已知MC的鉴定和毒性的文献进行了深入的综述,并在此简要介绍了这些主题。目前,至少已报告279个MC,并在此处列出。其中,约20%(279个中的55个)似乎是MC的化学或生物化学转化的结果,MC可以在环境中或在样品处理和提取蓝细菌的过程中发生,包括氧化产物,甲酯或生物合成后代谢产物。还使用多种不同的方法研究了许多MC的毒性,即使对于同一个同类物,在报道的毒性之间也可以观察到很大的变异性。这篇综述将有助于弄清关于一类MC的结构多样性的知识的现状以及结构对毒性的影响,以及找出未来研究中应解决的知识空白。

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