University of North Carolina at Charlotte, Department of Biology, 9201 University City Boulevard, Charlotte, NC 28223, USA.
Aquat Toxicol. 2013 Aug 15;138-139:123-8. doi: 10.1016/j.aquatox.2013.04.015. Epub 2013 May 9.
Silver nanoparticle (AgNP) toxicity in eastern oysters, Crassostrea virginica, was investigated in both gill and hepatopancreas tissues, and compared to dissolved Ag exposures. Oysters were exposed to varying concentrations of AgNPs prepared with citrate coatings and dissolved Ag (AgNO₃) for 48 h and the effects on a suite of biomarkers of cellular stress were evaluated. Two biomarkers of cellular damage were evaluated-lysosomal destabilization rates of hepatopancreas cells as indicators of lysosomal damage, and lipid peroxidation as an indicator of oxidative damage. Total glutathione (GSH), catalase (CAT), and superoxide dismutase (SOD) assays were used as indicators of impacts on antioxidant capacity. The results indicated that gill tissues were more prone to oxidative damage following dissolved Ag exposures than AgNP exposures, while hepatopancreas tissues were more sensitive to AgNP exposures. Total protein levels increased in hepatopancreas tissues following AgNP exposures, but not dissolved Ag exposures. These tissue specific differences in toxicity and bioreactivity of Ag nanoparticles compared to dissolved metal ions reflect distinct nanoparticle effects. Oysters exposed to dissolved Ag would be more prone to cellular and tissue damage of gills, but oysters exposed to AgNPs could be more prone to hepatopancreas damage contributing to metabolic and reproductive impairment.
采用柠檬酸涂层制备的银纳米颗粒(AgNP)和溶解态银(AgNO₃)对美洲牡蛎(Crassostrea virginica)的鳃和肝胰腺组织进行了 48 小时暴露实验,研究了其毒性,并与溶解态 Ag 的暴露进行了比较。实验评估了一系列细胞应激生物标志物的变化。评估了两种细胞损伤生物标志物:肝胰腺细胞的溶酶体稳定性作为溶酶体损伤的指标,以及脂质过氧化作为氧化损伤的指标。总谷胱甘肽(GSH)、过氧化氢酶(CAT)和超氧化物歧化酶(SOD)测定法被用作抗氧化能力影响的指标。结果表明,与 AgNP 暴露相比,溶解态 Ag 暴露更易导致鳃组织发生氧化损伤,而肝胰腺组织对 AgNP 暴露更为敏感。AgNP 暴露会导致肝胰腺组织中的总蛋白水平升高,但溶解态 Ag 暴露则不会。与溶解态金属离子相比,Ag 纳米颗粒在毒性和生物反应性方面的这些组织特异性差异反映了明显的纳米颗粒效应。暴露于溶解态 Ag 的牡蛎更易发生鳃组织的细胞和组织损伤,但暴露于 AgNPs 的牡蛎更易发生肝胰腺损伤,从而导致代谢和生殖功能受损。