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蓝藻毒性评估中的生物测试——是否足够高效?

Biotests in Cyanobacterial Toxicity Assessment-Efficient Enough or Not?

作者信息

Davidović Petar, Blagojević Dajana, Meriluoto Jussi, Simeunović Jelica, Svirčev Zorica

机构信息

Department of Biology and Ecology, Faculty of Sciences, University of Novi Sad, Trg Dositeja Obradovića 2, 21000 Novi Sad, Serbia.

Faculty of Science and Engineering, Biochemistry, Åbo Akademi, Tykistökatu 6 A, 20520 Turku, Finland.

出版信息

Biology (Basel). 2023 May 12;12(5):711. doi: 10.3390/biology12050711.

Abstract

Cyanobacteria are a diverse group of organisms known for producing highly potent cyanotoxins that pose a threat to human, animal, and environmental health. These toxins have varying chemical structures and toxicity mechanisms and several toxin classes can be present simultaneously, making it difficult to assess their toxic effects using physico-chemical methods, even when the producing organism and its abundance are identified. To address these challenges, alternative organisms among aquatic vertebrates and invertebrates are being explored as more assays evolve and diverge from the initially established and routinely used mouse bioassay. However, detecting cyanotoxins in complex environmental samples and characterizing their toxic modes of action remain major challenges. This review provides a systematic overview of the use of some of these alternative models and their responses to harmful cyanobacterial metabolites. It also assesses the general usefulness, sensitivity, and efficiency of these models in investigating the mechanisms of cyanotoxicity expressed at different levels of biological organization. From the reported findings, it is clear that cyanotoxin testing requires a multi-level approach. While studying changes at the whole-organism level is essential, as the complexities of whole organisms are still beyond the reach of in vitro methodologies, understanding cyanotoxicity at the molecular and biochemical levels is necessary for meaningful toxicity evaluations. Further research is needed to refine and optimize bioassays for cyanotoxicity testing, which includes developing standardized protocols and identifying novel model organisms for improved understanding of the mechanisms with fewer ethical concerns. In vitro models and computational modeling can complement vertebrate bioassays and reduce animal use, leading to better risk assessment and characterization of cyanotoxins.

摘要

蓝藻细菌是一类多样的生物体,以产生对人类、动物和环境健康构成威胁的高效蓝藻毒素而闻名。这些毒素具有不同的化学结构和毒性机制,并且几种毒素类别可能同时存在,这使得即使确定了产毒生物体及其丰度,使用物理化学方法评估它们的毒性作用也很困难。为应对这些挑战,随着越来越多的检测方法从最初建立并常规使用的小鼠生物检测方法发展和分化出来,水生脊椎动物和无脊椎动物中的替代生物体正在被探索。然而,在复杂的环境样品中检测蓝藻毒素并表征其毒性作用模式仍然是重大挑战。本综述系统概述了其中一些替代模型的使用及其对有害蓝藻代谢产物的反应。它还评估了这些模型在研究不同生物组织水平上表达的蓝藻毒性机制方面的一般实用性、敏感性和效率。从已报道的研究结果来看,很明显蓝藻毒素检测需要采用多层次方法。虽然研究整个生物体水平的变化至关重要,因为整个生物体的复杂性仍然超出了体外方法的范围,但在分子和生化水平上理解蓝藻毒性对于有意义的毒性评估是必要的。需要进一步研究来完善和优化用于蓝藻毒素检测的生物检测方法,这包括制定标准化方案和识别新型模型生物体,以便在减少伦理问题的情况下更好地理解其机制。体外模型和计算模型可以补充脊椎动物生物检测并减少动物使用,从而实现对蓝藻毒素更好的风险评估和特征描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d9d/10215280/aa2554f9af4a/biology-12-00711-g001.jpg

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