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工程纳米材料鱼类早期生活阶段毒性试验的批判性评估:实验改进与建议

A critical evaluation of the fish early-life stage toxicity test for engineered nanomaterials: experimental modifications and recommendations.

作者信息

Shaw Benjamin J, Liddle Corin C, Windeatt Kirsten M, Handy Richard D

机构信息

Ecotoxicology Research and Innovation Centre, School of Biological Sciences, Plymouth University, Drake Circus, Plymouth, PL4 8AA, UK.

出版信息

Arch Toxicol. 2016 Sep;90(9):2077-2107. doi: 10.1007/s00204-016-1734-7. Epub 2016 Jun 18.

Abstract

There are concerns that regulatory toxicity tests are not fit for purpose for engineered nanomaterials (ENMs) or need modifications. The aim of the current study was to evaluate the OECD 210 fish, early-life stage toxicity test for use with TiO2 ENMs, Ag ENMs, and MWCNT. Both TiO2 ENMS (≤160 mg l(-1)) and MWCNT (≤10 mg l(-1)) showed limited acute toxicity, whilst Ag ENMs were acutely toxic to zebrafish, though less so than AgNO3 (6-day LC50 values of 58.6 and 5.0 µg l(-1), respectively). Evidence of delayed hatching, decreased body length and increased muscle width in the tail was seen in fish exposed to Ag ENMs. Oedema (swollen yolk sacs) was also seen in fish from both Ag treatments with, for example, mean yolk sac volumes of 17, 35 and 39 µm(3) for the control, 100 µg l(-1) Ag ENMs and 5 µg l(-1) AgNO3 treatments, respectively. Among the problems with the standard test guidelines was the inability to maintain the test solutions within ±20 % of nominal concentrations. Pronounced settling of the ENMs in some beakers also made it clear the fish were not being exposed to nominal concentrations. To overcome this, the exposure apparatus was modified with the addition of an exposure chamber that ensured mixing without damaging the delicate embryos/larvae. This allowed more homogeneous ENM exposures, signified by improved measured concentrations in the beakers (up to 85.7 and 88.1 % of the nominal concentrations from 10 mg l(-1) TiO2 and 50 µg l(-1) Ag ENM exposures, respectively) and reduced variance between measurements compared to the original method. The recommendations include: that the test is conducted using exposure chambers, the use of quantitative measurements for assessing hatching and morphometrics, and where there is increased sensitivity of larvae over embryos to conduct a shorter, larvae-only toxicity test with the ENMs.

摘要

人们担心,监管毒性测试不适用于工程纳米材料(ENM)或需要进行修改。本研究的目的是评估经合组织210号鱼类早期生命阶段毒性测试在二氧化钛ENM、银ENM和多壁碳纳米管(MWCNT)中的适用性。二氧化钛ENM(≤160毫克/升)和MWCNT(≤10毫克/升)均显示出有限的急性毒性,而银ENM对斑马鱼具有急性毒性,尽管毒性低于硝酸银(6天半数致死浓度分别为58.6和5.0微克/升)。在暴露于银ENM的鱼类中,观察到孵化延迟、体长减小和尾部肌肉宽度增加的迹象。在两种银处理的鱼类中均观察到水肿(卵黄囊肿胀),例如,对照组、100微克/升银ENM处理组和5微克/升硝酸银处理组的平均卵黄囊体积分别为17、35和39立方微米。标准测试指南存在的问题之一是无法将测试溶液维持在标称浓度的±20%范围内。在一些烧杯中,ENM明显沉降,这也表明鱼类未暴露于标称浓度。为克服这一问题,对暴露装置进行了改进,增加了一个暴露室,以确保混合而不损害脆弱的胚胎/幼虫。这使得ENM暴露更加均匀,烧杯中测量浓度的提高(分别为10毫克/升二氧化钛和50微克/升银ENM暴露标称浓度的85.7%和88.1%)以及与原始方法相比测量之间的方差减小表明了这一点。建议包括:使用暴露室进行测试,采用定量测量来评估孵化和形态测量,以及在幼虫比胚胎更敏感的情况下,对ENM进行更短的仅针对幼虫的毒性测试。

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