Schouest Katherine, Zitova Alice, Spillane Charles, Papkovsky Dmitri
Genetics and Biotechnology Lab, Department of Biochemistry, BioSciences Institute, University College Cork, College Road, Cork, Ireland.
Environ Toxicol Chem. 2009 Apr;28(4):791-9. doi: 10.1897/08-083.1.
Oxygen consumption is indicative of an organism's metabolic state, whereby alterations in respiration rate can result from the presence of different stimuli. Here, we develop a novel approach based on quenched fluorescence oxygen sensing and respirometry method for toxicity screening assays using the nematode Caenorhabditis elegans. Previously, C. elegans was established as a useful model in soil and aquatic toxicology studies. For existing toxicology screening approaches with C. elegans, however, the endpoint is lethality. In addition, the assay time frame for the existing approaches is considerably longer than that for the approach described here. We present a sensitive, robust, high-throughput platform using standard laboratory equipment for toxicological studies by measuring respiration rate in C. elegans animals using a phosphorescent probe.
氧消耗表明生物体的代谢状态,呼吸速率的改变可能由不同刺激的存在引起。在此,我们开发了一种基于猝灭荧光氧传感和呼吸测定法的新方法,用于使用线虫秀丽隐杆线虫进行毒性筛选试验。此前,秀丽隐杆线虫已被确立为土壤和水生毒理学研究中的有用模型。然而,对于现有的秀丽隐杆线虫毒理学筛选方法,终点是致死率。此外,现有方法的检测时间框架比这里描述的方法长得多。我们通过使用磷光探针测量秀丽隐杆线虫动物的呼吸速率,提出了一个使用标准实验室设备进行毒理学研究的灵敏、稳健、高通量平台。