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Toxicity testing with luminescent bacteria - Characterization of an automated method for the combined assessment of acute and chronic effects

机译:发光细菌的毒性测试-急性和慢性影响的综合评估自动化方法的表征

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摘要

The luminescent bacteria test according to EN ISO 11348 is frequently applied in (eco) toxicity testing and is applicable for a huge variety of environmental and industrial samples. A big disadvantage of this method is the very short exposure time, which is expressed in a low sensitivity in regard to substances with a delayed effect. Chronic effects, i.e. interference with cell growth, cannot be assessed with this conventional standard method. The goal of this research was to develop an automated testing system for long term toxicity towards the luminescent bacteria Vibrio fischeri by implementing microtitration-based instrumentation. The optimized method, hereinafter referred to as "kinetic luminescent bacteria test", can be described as a miniaturized combination of the conventional short-term luminescence inhibition test according to EN ISO 11348 and the Photobacterium phosphoreum growth inhibition test (DIN 38412-37). The validation procedure included the evaluation of six reference compounds (3,4-Dichloroaniline, 3,5-Dichlorophenol, Chloramphenicol, Streptomycin sulfate, Potassium dichromate, Zinc sulfate heptahy-drate) and three different endpoints that are acute luminescence inhibition (acute LI) after 30 min, chronic luminescence inhibition (chronic LI) after 24 h and growth inhibition (GI) after 14 h. The optimized method allows the assessment of acute and chronic effects within one test, by what a misinterpretation of the toxicity of substances with delayed bacterial toxicity can be prevented, without abandoning most of the advantages of the conventional short-term test. Therefore, the kinetic luminescent bacteria test is exceptional as an initial screening test for environmental samples or substances with unknown (eco) toxicological characteristics.
机译:根据EN ISO 11348的发光细菌测试经常用于(生态)毒性测试,并且适用于各种环境和工业样品。该方法的主要缺点是暴露时间非常短,这对于具有延迟作用的物质表现出较低的敏感性。用这种常规标准方法不能评估慢性作用,即干扰细胞生长。这项研究的目的是通过实施基于微量滴定的仪器,开发一种针对发光细菌费氏弧菌的长期毒性的自动化测试系统。优化的方法,以下称为“动力学发光细菌测试”,可以描述为根据EN ISO 11348的常规短期发光抑制测试和光电细菌磷生长抑制测试(DIN 38412-37)的小型组合。验证程序包括评估六种参考化合物(3,4-二氯苯胺,3,5-二氯苯酚,氯霉素,硫酸链霉素,重铬酸钾,硫酸七庚酯)和三个不同的急性发光抑制终点(急性LI) 30分钟后,在24小时后抑制慢性发光(慢性LI),在14小时后抑制生长(GI)。通过优化方法,可以在一次测试中评估急性和慢性作用,从而可以避免误解具有延迟细菌毒性的物质的毒性,而又不会放弃常规短期测试的大部分优势。因此,动力学发光细菌测试作为环境样品或具有未知(生态)毒理学特征的物质的初始筛选测试是出色的。

著录项

  • 来源
    《Chemosphere》 |2013年第6期|990-996|共7页
  • 作者单位

    Institute of Sustainable and Environmental Chemistry, Leuphana University Luneburg, Scharnhorststrasse 1/C13, 21335 Lueneburg, Germany;

    Institute of Sustainable and Environmental Chemistry, Leuphana University Luneburg, Scharnhorststrasse 1/C13, 21335 Lueneburg, Germany;

    Institute of Sustainable and Environmental Chemistry, Leuphana University Luneburg, Scharnhorststrasse 1/C13, 21335 Lueneburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vibrio fischeri; Luminescence inhibition; Growth inhibition; Chronic toxicity; Ecotoxicity; Environmental risk assessment;

    机译:费氏弧菌;发光抑制;生长抑制;慢性中毒;生态毒性;环境风险评估;

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