Suppr超能文献

虹鳟(Oncorhynchus mykiss)和欧洲鳗鲡(Anguilla anguilla)鳃中放射性标记银的摄取和净化动力学:银形态的影响

Kinetics of radiolabelled silver uptake and depuration in the gills of rainbow trout (Oncorhynchus mykiss) and European eel (Anguilla anguilla): the influence of silver speciation.

作者信息

Wood Chris M, Grosell Martin, Hogstrand Christer, Hansen Heinz

机构信息

Department of Biology, McMaster University, 1280 Main Street West, Ontario, L8S 4K1, Hamilton, Canada.

出版信息

Aquat Toxicol. 2002 Feb;56(3):197-213. doi: 10.1016/s0166-445x(01)00182-5.

Abstract

We examined the influence of speciation on the kinetics of silver uptake and depuration in the gills of two freshwater fish, the rainbow trout (Oncorhynchus mykiss) which has high branchial Na(+) and Cl(-) uptake rates and is relatively sensitive to silver, and the European eel (Anguilla anguilla, yellow stage) which has low ion uptake rates and is relatively resistant to silver. Fish previously acclimated to the appropriate chloride level were exposed to 110mAgNO(3) (1.3 microg l(-1), sublethal) for 24 h in synthetic softwater with either low (10 microM) or high (1200 microM) chloride concentration, and then followed over a subsequent 67-day post-exposure period in silver-free water of the same chloride content. The exposures were therefore mainly to the free ion, Ag(+) in the low chloride water versus mainly to the neutral aqueous complex, AgCl(aq) in the high chloride water. In trout, but not in eel, water chloride is known to protect against physiological disturbances and toxicity caused by Ag(+). In both fish species, at both chloride levels, silver uptake exhibited complex kinetics. Gill silver loading occurred slowly until 6 h, then rose greatly to a peak at 12 h, followed by significant net depuration thereafter during continued exposure. By 24 h, net gill loading was three- to fivefold greater from AgCl(aq) than from Ag(+) exposure in both species, and threefold greater in trout than in eel under both conditions, with trout holding a lower fraction of the whole body burden in their gills. During the post-exposure period, depuration of silver from the gills occurred rapidly in trout, but very slowly in eel, such that gill silver burdens were greater in eel throughout the 67-day period on both an absolute and relative basis (e.g. 35% of whole body burden in eel versus <3% in trout at day 8). The kinetics of depuration were described by two phase exponential models, with break points between the fast and slow phases at 1 and 15 days for trout and eel, respectively. We conclude that speciation affects not only uptake rates but also the kinetics of depuration. When silver is loaded from AgCl(aq) it is clearly more labile than from Ag(+) exposures, with 1.6-1.8-fold greater loss rates during the fast phases in both species. Differences in branchial silver uptake between eel and trout correlate well with differences in acute toxicity, but are not as large as differences in ion uptake rates. The complex time-dependent patterns of gill loading, and the higher loading from AgCl(aq) than from Ag(+), mean that gill total silver burden is not an appropriate endpoint for biotic ligand modelling.

摘要

我们研究了形态对两种淡水鱼鳃中银吸收和净化动力学的影响。这两种鱼分别是虹鳟(Oncorhynchus mykiss),其鳃对钠(Na⁺)和氯(Cl⁻)的吸收速率较高,且对银相对敏感;以及欧洲鳗鲡(Anguilla anguilla,黄色阶段),其离子吸收速率较低,对银相对耐受。预先适应了适当氯化物水平的鱼,在氯化物浓度低(10微摩尔/升)或高(1200微摩尔/升)的合成软水中,暴露于110微摩尔硝酸银(1.3微克/升,亚致死剂量)24小时,然后在随后67天的暴露后阶段,置于相同氯化物含量的无银水中跟踪观察。因此,在低氯化物水中,暴露主要是针对游离离子Ag⁺,而在高氯化物水中,主要是针对中性水合络合物AgCl(aq)。已知在虹鳟中,而不是在鳗鲡中,水中的氯化物可防止由Ag⁺引起的生理紊乱和毒性。在两种鱼类中,在两种氯化物水平下,银的吸收都呈现出复杂的动力学。鳃中银的积累在6小时前缓慢发生,然后在12小时大幅上升至峰值,随后在持续暴露期间出现显著的净净化。到24小时时,在两种鱼类中,从AgCl(aq)暴露中积累的鳃净负荷比从Ag⁺暴露中高3至5倍,在两种条件下,虹鳟中的积累量比鳗鲡高3倍,虹鳟鳃中占全身负荷的比例较低。在暴露后阶段,虹鳟鳃中银的净化迅速发生,但在鳗鲡中非常缓慢,以至于在整个67天期间,鳗鲡鳃中的银负荷在绝对和相对基础上都更大(例如,在第8天,鳗鲡中占全身负荷的35%,而虹鳟中小于3%)。净化动力学由两相指数模型描述,虹鳟和鳗鲡快速和慢速阶段之间的断点分别为1天和15天。我们得出结论,形态不仅影响吸收速率,还影响净化动力学。当从AgCl(aq)加载银时,它显然比从Ag⁺暴露中更不稳定,在两种鱼类的快速阶段损失率高1.6至1.8倍。鳗鲡和虹鳟鳃对银吸收的差异与急性毒性的差异密切相关,但不如离子吸收速率的差异大。鳃负荷随时间变化的复杂模式,以及从AgCl(aq)比从Ag⁺有更高的负荷,意味着鳃中总银负荷不是生物配体建模的合适终点。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验