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Acute toxicities of six manufactured nanomaterial suspensions to Daphnia magna

机译:六种人造纳米材料悬浮液对水蚤的急性毒性

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The rapid growth of nanotechnology is stimulating research on the potential environmental impacts of manufactured nanomaterials (MNMs). This paper summarizes a comprehensive study on the 48-h acute toxicity of water suspensions of six MNMs (i.e., ZnO, TiO2, Al2O3, C60, SWCNTs, and MWCNTs) to Daphnia magna, using immobilization and mortality as toxicological endpoints. The results show that the acute toxicities of all MNMs tested are dose dependent. The EC50 values for immobilization ranged from 0.622 mg/L (ZnO NPs) to 114.357 mg/L (Al2O3 NPs), while the LC50 values for mortality ranged from 1.511 mg/L (ZnO NPs) to 162.392 mg/L (Al2O3 NPs). In these tests, TiO2, Al2O3, and carbon-based nanomaterials were more toxic than their bulk counterparts. Moreover, D. magna were found to ingest nanomaterials from the test solutions through feeding behaviors, which indicates that the potential ecotoxicities and environmental health effects of these MNMs cannot be neglected.
机译:纳米技术的快速发展正在刺激人们对人造纳米材料(MNM)的潜在环境影响的研究。本文总结了对六个MNM(ZnO,TiO2 ,Al2 O3 ,C60 ,SWCNTs和SWCNTs)的水悬浮液48小时急性毒性的综合研究。使用固定化和死亡率作为毒理学终点。结果表明,所有测试的MNM的急性毒性均与剂量有关。固定化的EC50 值范围从0.622 mg / L(ZnO NPs)到114.357 mg / L(Al2 O3 NPs),而LC50的死亡率范围从1.511 mg / L(ZnO NPs)至162.392 mg / L(Al2 O3 NPs)。在这些测试中,TiO2 ,Al2 O3 和碳基纳米材料的毒性要比其体积较大的同类材料高。此外,发现D. magna通过进食行为从测试溶液中摄取纳米材料,这表明这些MNM的潜在生态毒性和环境健康影响不可忽略。

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