Departamento de Farmacología, Facultad de Veterinaria, Universidade de Santiago de Compostela, 27002, Lugo, Spain.
Departamento de Física Aplicada, Universidad de Santiago de Compostela, Facultad de Física, 15782, Santiago de Compostela, Spain.
Chemosphere. 2020 Oct;256:127019. doi: 10.1016/j.chemosphere.2020.127019. Epub 2020 May 10.
Marine and freshwater toxins contaminate water resources, shellfish and aquaculture products, causing a broad range of toxic effects in humans and animals. Different core-shell nanoparticles were tested as a new sorbent for removing marine and freshwater toxins from liquid media. Water solutions were contaminated with 20 μg/L of marine toxins and up to 50 μg/L of freshwater toxins and subsequently treated with 250 or 125 mg/L of nanoparticles. Under these conditions, carbon nanoparticles removed around 70% of saxitoxins, spirolides, and azaspiracids, and up to 38% of diarrheic shellfish poisoning toxins. In the case of freshwater toxins, the 85% of microcystin LR was eliminated; other cyclic peptide toxins were also removed in a high percentage. Marine toxins were adsorbed in the first 5 min of contact, while for freshwater toxins it was necessary 60 min to reach the maximum adsorption. Toxins were recovered by extraction from nanoparticles with different solvents. Gymnodinium catenatum, Prorocentrum lima, and Microcystis aeruginosa cultures were employed to test the ability of nanoparticles to adsorb toxins in a real environment, and the same efficacy to remove toxins was observed in these conditions. These results suggest the possibility of using the nanotechnology in the treatment of contaminated water or in chemical analysis applications.
海洋和淡水毒素污染了水资源、贝类和水产养殖产品,对人类和动物造成了广泛的毒性影响。不同的核壳纳米粒子被测试为一种从液体介质中去除海洋和淡水毒素的新型吸附剂。将水基溶液用 20μg/L 的海洋毒素和高达 50μg/L 的淡水毒素污染,然后用 250 或 125mg/L 的纳米粒子处理。在这些条件下,碳纳米粒子去除了约 70%的石房蛤毒素、螺旋藻毒素和azaspiracids,以及高达 38%的腹泻性贝类毒素。在淡水毒素的情况下,85%的微囊藻 LR 被消除;其他环肽毒素也被大量去除。海洋毒素在接触的前 5 分钟内被吸附,而对于淡水毒素,需要 60 分钟才能达到最大吸附。毒素通过用不同溶剂从纳米粒子中萃取来回收。采用链状裸甲藻、利玛原甲藻和铜绿微囊藻培养物来测试纳米粒子在真实环境中吸附毒素的能力,在这些条件下观察到同样有效的毒素去除效果。这些结果表明,纳米技术有可能用于处理受污染的水或在化学分析应用中。