Evaluation of Short-Term Mussel Test for Estimating Toxicity

IF 3.6 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Ning Wang, James L. Kunz, Christopher D. Ivey, Danielle Cleveland, Jeffery A. Steevens
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Abstract

Effect concentrations of ammonia, nickel, sodium chloride, and potassium chloride from short-term 7-day tests were compared to those from standard chronic 28-day toxicity tests with juvenile mussels (fatmucket, Lampsilis siliquoidea) to evaluate the sensitivities of the 7-day tests. The effect concentrations for nickel (59 µg Ni/L), chloride (316–519 mg Cl/L, a range from multiple tests), and potassium (15 mg K/L) obtained from the 7-day tests were within a range of effect concentrations for each corresponding chemical in the 28-day tests (41–91 µg Ni/L, 251–>676 mg Cl/L, 15–23 mg K/L), whereas the 7-day ammonia effect concentration (0.40 mg/L total ammonia nitrogen; TAN) was up to 3.3-fold greater than the 28-day effect concentrations (0.12–0.36 mg TAN/L) but with overlapped 95% confidence limits. These results indicate that the 7-day tests produced similar estimates compared to the 28-day tests. Further studies are needed to evaluate the 7-day test sensitivity using additional chemicals with different modes of toxic action. Environ Toxicol Chem 2024;43:2020–2025. Published 2024. This article is a U.S. Government work and is in the public domain in the USA.

评估估计毒性的短期贻贝试验。
将 7 天短期试验得出的氨、镍、氯化钠和氯化钾的效应浓度与幼贻贝(脂贻贝,Lampsilis siliquoidea)28 天标准慢性毒性试验得出的效应浓度进行比较,以评估 7 天试验的敏感性。7 天试验得出的镍(59 微克镍/升)、氯化物(316-519 毫克氯/升,多个试验得出的范围)和钾(15 毫克钾/升)的效应浓度在 28 天试验中每种相应化学品的效应浓度范围内(41-91 微克镍/升、251->676 毫克氯/升、15-23 毫克钾/升),而 7 天氨氮效应浓度(0.而 7 天的氨氮效应浓度(0.12-0.36 毫克氨氮/升)是 28 天效应浓度(0.12-0.36 毫克氨氮/升)的 3.3 倍,但 95% 的置信区间是重叠的。这些结果表明,与 28 天测试相比,7 天测试得出的估计值相似。需要进一步开展研究,利用更多具有不同毒性作用模式的化学品来评估 7 天试验的灵敏度。环境毒物化学 2024;00:1-6。发表于 2024 年。本文为美国政府著作,在美国属于公共领域。
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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来源期刊
CiteScore
7.40
自引率
9.80%
发文量
265
审稿时长
3.4 months
期刊介绍: The Society of Environmental Toxicology and Chemistry (SETAC) publishes two journals: Environmental Toxicology and Chemistry (ET&C) and Integrated Environmental Assessment and Management (IEAM). Environmental Toxicology and Chemistry is dedicated to furthering scientific knowledge and disseminating information on environmental toxicology and chemistry, including the application of these sciences to risk assessment.[...] Environmental Toxicology and Chemistry is interdisciplinary in scope and integrates the fields of environmental toxicology; environmental, analytical, and molecular chemistry; ecology; physiology; biochemistry; microbiology; genetics; genomics; environmental engineering; chemical, environmental, and biological modeling; epidemiology; and earth sciences. ET&C seeks to publish papers describing original experimental or theoretical work that significantly advances understanding in the area of environmental toxicology, environmental chemistry and hazard/risk assessment. Emphasis is given to papers that enhance capabilities for the prediction, measurement, and assessment of the fate and effects of chemicals in the environment, rather than simply providing additional data. The scientific impact of papers is judged in terms of the breadth and depth of the findings and the expected influence on existing or future scientific practice. Methodological papers must make clear not only how the work differs from existing practice, but the significance of these differences to the field. Site-based research or monitoring must have regional or global implications beyond the particular site, such as evaluating processes, mechanisms, or theory under a natural environmental setting.
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