Tkatcheva Victoria, Poirier David, Chong-Kit Richard, Furdui Vasile I, Burr Christopher, Leger Ray, Parmar Jaspal, Switzer Teresa, Maedler Stefanie, Reiner Eric J, Sherry James P, Simmons Denina B D
Laboratory Service Branch (LaSB), Ontario Ministry of Environment and Climate Change (MOECC), Etobicoke, ON M9P 3V6, Canada.
Laboratory Service Branch (LaSB), Ontario Ministry of Environment and Climate Change (MOECC), Etobicoke, ON M9P 3V6, Canada.
Aquat Toxicol. 2015 Apr;161:85-93. doi: 10.1016/j.aquatox.2015.01.030. Epub 2015 Feb 2.
Worldwide production of lithium (Li) has increased dramatically during the past decade, driven by the demand for high charge density batteries. Information about Li in the aquatic environment is limited. The present study was designed to explore the effects of Li in rainbow trout (Oncorhynchus mykiss). Juvenile trout were exposed to a nominal concentration of 1.0mg Li/L in three separate exposures. Major ion concentrations were measured in brain and plasma by ion chromatography. Plasma proteins and fatty acids were measured by HPLC-MS/MS. Lithium accumulated in the brain and plasma. Arachidonic acid was elevated in plasma after 48h. Elevated concentrations of Li in brain were associated with depressed concentrations of sodium, magnesium, potassium and ammonium relative to the control. In plasma, sodium and calcium were also depressed. Several changes occurred to plasma proteins corresponding to Li exposure: inhibition of prostaglandin synthase (Ptgs2), increased expression of copper transporting ATP synthases, and Na(+)/K(+) ATPase. To our knowledge, ours is the first study to demonstrate elevated Li concentrations in fish brain, with associated effects on ion regulation.
在过去十年中,受高电荷密度电池需求的推动,全球锂(Li)产量急剧增加。关于水生环境中锂的信息有限。本研究旨在探究锂对虹鳟(Oncorhynchus mykiss)的影响。幼鱼在三次单独暴露中暴露于名义浓度为1.0毫克锂/升的环境中。通过离子色谱法测量大脑和血浆中的主要离子浓度。通过HPLC-MS/MS测量血浆蛋白质和脂肪酸。锂在大脑和血浆中蓄积。48小时后血浆中花生四烯酸升高。相对于对照组,大脑中锂浓度升高与钠、镁、钾和铵浓度降低有关。在血浆中,钠和钙也降低。与锂暴露相关的血浆蛋白质发生了一些变化:前列腺素合酶(Ptgs2)受到抑制,铜转运ATP合酶表达增加,以及Na(+)/K(+) ATP酶。据我们所知,我们的研究是首次证明鱼类大脑中锂浓度升高及其对离子调节的相关影响。