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A review on advantages of implementing luminescence inhibition test (Vibrio fischeri) for acute toxicity prediction of chemicals

机译:实施发光抑制试验(Vibrio fischeri)对化学品急性毒性预测的优势的综述

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摘要

Evaluation of biological effects using a rapid, sensitive and cost effective method can indicate specific information on toxicity/ecotoxicity. Since assays based on animals, plants and algae are expensive, time consuming and require large sample volume, recent studies have emphasized the benefits of rapid, reproducible and cost effective bacterial assays for toxicity screening and assessment. This review focuses on a bacterial assay, i.e., Vibrio fischeri bioluminescence inhibition assay, which is often chosen as the first test in a test battery based on speed and cost consideration. The test protocol is simple and was originally applied for aqueous phase samples or extracts. The versatility of the assay has increased with subsequent modification, i.e., the kinetic assay for turbid and colored samples and the solid phase test for analyzing sediment toxicity. Researchers have reported the Vibrio fischeri bioluminescence assay as the most sensitive across a wide range of chemicals compared to other bacterial assays such as nitrification inhibition, respirometry, ATP luminescence and enzyme inhibition. This assay shows good correlations with other standard acute toxicity assays and is reported to detect toxicity across a wide spectrum of toxicants.
机译:使用快速,敏感和具有成本效益的方法评估生物效应可以表明毒性/生态毒性的具体信息。由于基于动物,植物和藻类的测定昂贵,费时且需要大量样品,因此最近的研究强调了快速,可重复且经济高效的细菌测定用于毒性筛选和评估的好处。这篇综述着重于细菌测定,即费氏弧菌生物发光抑制测定,基于速度和成本考虑,通常将其选作测试电池中的第一个测试。测试规程很简单,最初用于水相样品或提取物。该测定法的多功能性随着随后的改进而增加,即,浊度和有色样品的动力学测定法以及用于分析沉积物毒性的固相测定法。研究人员报告称,与硝化抑制,呼吸测定,ATP发光和酶抑制等其他细菌测定法相比,费氏弧菌生物发光测定法在多种化学品中最为敏感。该测定法与其他标准的急性毒性测定法具有很好的相关性,据报道可检测多种毒物的毒性。

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