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Nanoparticles: An Experimental Study of Zinc Nanoparticles Toxicity on Marine Crustaceans. General Overview on the Health Implications in Humans

机译:纳米粒子:含锌纳米粒子毒性对海洋甲壳类动物的实验研究。关于人类健康影响的一般概述

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Abstract: The presence of products containing nanoparticles or nanofibers is rapidly growing. Nanotechnology involves a wide spectrum of industrial fields. There is a lack of information regarding the toxicity of these nanoparticles in aqueous media. The potential acute toxicity of ZnO NPs using two marine crustacean species: the copepod Tigriopus fulvus and the amphypod Corophium insidiosum was evaluated. Acute tests were conducted on adults of T. Fulvus nauplii and C. insidiosum. Both test species were exposed for 96 hours to 5 increasing concentrations of ZnO NPs and ZnSO4H2O, and the endpoint was mortality. Statistical analysis revealed that the mean LC50 values of both ZnO NPs and ZnSO4H2O (ZnO NPs: F=59.42; P0.0015; ZnSO4H2O: F=25.57; P 0.0015) were significantly lower for Tigriopus fulvus than for Corophium insidiosum. This result confirms that the toxic effect could be mainly attributed to the Zn ions, confirming that the dissolution processes play a crucial role in the toxicity of the ZnO NPs.
机译:摘要:含有纳米颗粒或纳米纤维的产品的存在迅速生长。纳米技术涉及广泛的工业领域。缺乏关于这些纳米颗粒在水性介质中的毒性的信息。使用两种海洋甲壳类动物的ZnO NPS的潜在急性毒性:评估桡足类曲线曲线和AmphyPod胆管内部。对T.Fulvus Nauplii和C.neidiosum的成人进行了急性试验。将两种测试物种均暴露96小时至5个增加浓度的ZnO NPS和ZnSO 4H 2 O,并且终点是死亡率。统计学分析显示,ZnO NPS和ZnSO4H 2 O的平均LC50值(ZnO NPS:F = 59.42; P <0.0015; ZnSO4H2O:F = 25.57; P <0.0015)对于Tigriopus Fulvus而言,对于胆碱的内部,显着降低。该结果证实毒性效应主要归因于Zn离子,证实溶解过程在ZnO NP的毒性中起着至关重要的作用。

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