EVALUATING THE ECOTOXICITY OF DIFFERENT PHARMACEUTICALS USING ALIIVIBRIO FISCHERI BIOASSAYS

L. Ionescu, S. Gheorghe, Daniel Mitru, C. Stoica, A. Banciu, Mădălina Mihalache, M. Nita-Lazar
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引用次数: 1

Abstract

An endless list of companies has produced a large amount of pharmaceutical compounds in a year-on-year growth trend. Due to the excessive consumption of these substances and the inappropriate disposal, the environment was contaminated, especially aquatic ecosystems, with quantities of pharmaceuticals (PHACs) so that they have affected the living organisms, leading to decreased biodiversity and ecological degradation. Many studies on PHACs environmental presence and toxic effects were performed, but unfortunately, no limit was establishing for discharging into the environment, especially into the aquatic systems. The aim of this study was to use the bioluminescence of Aliivibrio fischeri bacteria as an indicator of toxical effect of different PHACs in simulated marine mediums. The Microtox® bioassay is based on the PHACs inhibitory effect on the metabolism of bacteria which induced changes in their bacterial bioluminescence. The test organisms were exposed to analgesics and anti-inflammatories such as Diclofenac, Ketoprofen, Naproxen and Ibuprofen. The results showed that based on EC50 values, Naproxen had a very low toxicity but Diclofenac, Ketoprofen and Ibuprofen had a harmful effect on the aquatic organisms.
用菲氏弧菌生物测定法评价不同药物的生态毒性
不计其数的公司以逐年增长的趋势生产了大量的药物化合物。由于这些物质的过量消耗和处置不当,环境,特别是水生生态系统受到了大量药物(PHACs)的污染,从而影响了生物体,导致生物多样性下降和生态退化。对PHACs的环境存在和毒性效应进行了许多研究,但遗憾的是,没有确定向环境,特别是向水生系统排放的限制。本研究的目的是利用费氏alivibrio fischeri细菌的生物发光作为不同PHACs在模拟海洋培养基中的毒性作用的指标。Microtox®生物测定是基于PHACs对细菌代谢的抑制作用,引起细菌生物发光的变化。试验生物体暴露于镇痛药和消炎药,如双氯芬酸、酮洛芬、萘普生和布洛芬。结果表明,以EC50值计算,萘普生毒性极低,而双氯芬酸、酮洛芬和布洛芬对水生生物有有害影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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