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A Unifying Review of Bioassay-Guided Fractionation Effect-Directed Analysis and Related Techniques

机译:生物测定引导级分效果导向分析及相关技术的统一综述

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摘要

The success of modern methods in analytical chemistry sometimes obscures the problem that the ever increasing amount of analytical data does not necessarily give more insight of practical relevance. As alternative approaches, toxicity- and bioactivity-based assays can deliver valuable information about biological effects of complex materials in humans, other species or even ecosystems. However, the observed effects often cannot be clearly assigned to specific chemical compounds. In these cases, the establishment of an unambiguous cause-effect relationship is not possible. Effect-directed analysis tries to interconnect instrumental analytical techniques with a biological/biochemical entity, which identifies or isolates substances of biological relevance. Successful application has been demonstrated in many fields, either as proof-of-principle studies or even for complex samples. This review discusses the different approaches, advantages and limitations and finally shows some practical examples. The broad emergence of effect-directed analytical concepts might lead to a true paradigm shift in analytical chemistry, away from ever growing lists of chemical compounds. The connection of biological effects with the identification and quantification of molecular entities leads to relevant answers to many real life questions.
机译:现代方法在分析化学中的成功有时会掩盖一个问题,即不断增加的分析数据不一定能提供更多与实际相关的见解。作为替代方法,基于毒性和生物活性的测定法可以提供有关复杂材料对人类,其他物种甚至生态系统的生物学效应的有价值的信息。但是,观察到的效果通常不能明确地分配给特定的化合物。在这些情况下,不可能建立明确的因果关系。效果导向分析试图将仪器分析技术与生物/生化实体联系起来,该实体识别或隔离具有生物学相关性的物质。成功的应用已在许多领域得到了证明,无论是原理验证研究,还是复杂样品。这篇综述讨论了不同的方法,优点和局限性,最后给出了一些实际的例子。效果导向分析概念的广泛出现可能导致分析化学发生真正的范式转变,而不再是不断增长的化合物列表。生物效应与分子实体的识别和定量之间的联系导致了许多现实生活中问题的相关答案。

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