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Occupational and environmental hazard assessments for the isolation, purification and toxicity testing of cyanobacterial toxins

机译:蓝细菌毒素的分离,纯化和毒性测试的职业和环境危害评估

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Cyanobacteria can produce groups of structurally and functionally unrelated but highly potent toxins. Cyanotoxins are used in multiple research endeavours, either for direct investigation of their toxicologic properties, or as functional analogues for various biochemical and physiological processes. This paper presents occupational safety guidelines and recommendations for personnel working in field, laboratory or industrial settings to produce and use purified cyanotoxins and toxic cyanobacteria, from bulk harvesting of bloom material, mass culture of laboratory isolates, through routine extraction, isolation and purification. Oral, inhalational, dermal and parenteral routes are all potential occupational exposure pathways during the various stages of cyanotoxin production and application. Investigation of toxicologic or pharmacologic properties using in vivo models may present specific risks if radiolabelled cyanotoxins are employed, and the potential for occupational exposure via the dermal route is heightened with the use of organic solvents as vehicles. Inter- and intra-national transport of living cyanobacteria for research purposes risks establishing feral microalgal populations, so disinfection of culture equipment and destruction of cells by autoclaving, incineration and/or chlorination is recommended in order to prevent viable cyanobacteria from escaping research or production facilities.
机译:蓝细菌可以产生结构上和功能上不相关但高效的毒素。氰毒素被用于多种研究工作中,用于直接研究其毒理学性质,或用作各种生化和生理过程的功能类似物。本文为在野外,实验室或工业环境中工作的人员提供了职业安全准则和建议,以生产和使用纯化的蓝藻毒素和有毒的蓝细菌,从大批量收获大花材料,实验室分离株的大规模培养到常规提取,分离和纯化。在氰毒素生产和应用的各个阶段,口服,吸入,皮肤和肠胃外途径都是潜在的职业接触途径。如果使用放射性标记的氰毒素,使用体内模型进行的毒理学或药理学性质研究可能会带来特定的风险,并且通过使用有机溶剂作为媒介物会增加通过皮肤途径进行职业性暴露的可能性。为了研究目的而进行的跨国和国内活体蓝细菌的运输可能会建立野生微藻种群,因此建议对培养设备进行消毒,并通过高压灭菌,焚化和/或氯化消毒来破坏细胞,以防止可行的蓝细菌逃脱研究或生产设施。 。

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