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Colorimetric Evaluation of the Viability of the Microalga Dunaliella Salina as a Test Tool for Nanomaterial Toxicity

机译:比色法评估微藻杜氏盐藻作为纳米材料毒性测试工具的生存能力

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摘要

A diagnostic test system was developed to determine the toxicity of nanomaterials to the saltwater microalga Dunaliella salina through evaluation of cell death and changes in the culture growth rate at various toxicant concentrations, providing LC50 and other toxicological metrics. The viability of cells was shown to decrease with decreasing chlorophyll absorption of red light by damaged cells. This correlation was confirmed by independent fluorescence microscopic measurements of live and dead cells in the population. Two standard colorless pollutants, hydrogen peroxide and formaldehyde, were used to validate the colorimetric method. The method’s performance is exemplified with three Ag-containing preparations (Ag nitrate, Ag proteinate, and 20-nm Ag nanoparticles) and with cetyltrimethylammonium bromide (CTAB) mixed with colloidal 15-nm Au and 20-nm Ag nanoparticles. The toxicity of the Ag-containing preparations to D. salina decreased in the order Ag nitrate ≥ Ag proteinate ≫ colloidal Ag. The toxicity of colloidal Au-CTAB mixtures was found to depend mostly on the content of free CTAB. The toxicity of colloidal Ag increased substantially in the presence of CTAB. The results suggest that our D. salina–based colorimetric test system can be used for simple and rapid preliminary screening of the toxicity of different nanomaterials.
机译:开发了一种诊断测试系统,通过评估细胞死亡和各种毒物浓度下培养物生长速率的变化来确定纳米材料对盐水微藻杜氏盐藻的毒性,从而提供LC50和其他毒理学指标。结果表明,随着受损细胞对红光的叶绿素吸收的降低,细胞的活力会降低。通过对群体中活细胞和死细胞的独立荧光显微镜测量,证实了这种相关性。用两种标准的无色污染物过氧化氢和甲醛来验证比色法。该方法的性能以三种含银制剂(硝酸银,蛋白质银和20纳米银纳米颗粒)以及十六烷基三甲基溴化铵(CTAB)与15纳米胶体金和20纳米银纳米颗粒混合为例。含Ag的制剂对盐藻的毒性按硝酸银≥Ag蛋白protein胶态Ag的顺序降低。发现胶体Au-CTAB混合物的毒性主要取决于游离CTAB的含量。在CTAB的存在下,胶体Ag的毒性显着增加。结果表明,我们基于D. salina的比色测试系统可用于简单快速地初步筛选不同纳米材料的毒性。

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