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银纳米颗粒对淡水贻贝(Elliptio complanata)的生物利用度和免疫毒性。

Bioavailability and immunotoxicity of silver nanoparticles to the freshwater mussel Elliptio complanata.

机构信息

a Emerging Methods Section, Aquatic Contaminants Research Division , Water Science and Technology Directorate, Environment Canada , Montréal , Quebec , Canada.

出版信息

J Toxicol Environ Health A. 2013;76(13):767-77. doi: 10.1080/15287394.2013.818602.

DOI:10.1080/15287394.2013.818602
PMID:24028663
Abstract

The purpose of this study was to examine the effects of Ag nanoparticles (nAg) of two different sizes (20 and 80 nm) and Ag(+) on the immune system of the freshwater mussel Elliptio complanata. Mussels were exposed to increasing concentrations of nAg and dissolved Ag (AgNO3) for 48 h at 15°C and concentration of 0, 0.8, 4, or 20 μg/L. Immunocompetence was determined by hemocyte viability, phagocytosis, and cell cytotoxicity. Ag tissue loadings and levels of metallothioneins (MT), lipid peroxidation (LPO), and labile zinc (Zn) were also determined. Results revealed first that 20- and 80-nm nAg readily formed aggregates in freshwater. Ag was detected in soft tissues with each form of Ag with bioconcentration factors of 20, 9, and 7 for Ag(+), 20-nm nAg, and 80-nm nAg, respectively. Significant induction in phagocytosis and decreased cell cytotoxicity were observed. All forms of Ag were able to induce LPO in gills and digestive glands at concentrations below those from the initial fraction of dissolved Ag. The effects of nAg on MT levels in mussels were not discernible from those of dissolved Ag, but the 80-nm was 25-fold more potent than 20-nm nAg in inducing MT. Multivariate analysis revealed that the global responses of the 20- and 80-nm nAg were generally similar to those of dissolved Ag. Data also demonstrated that nAg are bioavailable for mussels where the immune system is a target during early exposure to nanoparticles.

摘要

本研究旨在探讨两种不同尺寸(20nm 和 80nm)的银纳米颗粒(nAg)和银离子(Ag+)对淡水贻贝 Elliptio complanata 免疫系统的影响。贻贝在 15°C 下,分别暴露于不同浓度的 nAg 和溶解银(AgNO3)中 48 小时,浓度分别为 0、0.8、4 或 20μg/L。通过血细胞活力、吞噬作用和细胞细胞毒性来确定免疫能力。还测定了 Ag 组织负荷和金属硫蛋白(MT)、脂质过氧化(LPO)和可利用锌(Zn)的水平。结果表明,首先,20nm 和 80nm 的 nAg 很容易在淡水中形成聚集体。Ag 以每种形式的 Ag 存在于软组织中,其生物浓缩因子分别为 20、9 和 7,用于 Ag+、20nm nAg 和 80nm nAg。观察到吞噬作用显著增加和细胞细胞毒性降低。所有形式的 Ag 都能够在鳃和消化腺中诱导 LPO,其浓度低于溶解 Ag 的初始部分。nAg 对贻贝 MT 水平的影响与溶解 Ag 的影响无法区分,但 80nm nAg 比 20nm nAg 诱导 MT 的效力高 25 倍。多元分析表明,20nm 和 80nm nAg 的总体反应通常与溶解 Ag 的反应相似。数据还表明,在纳米颗粒早期暴露期间,免疫系统是贻贝的靶标,nAg 对贻贝是生物可利用的。

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