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Environmental Feedbacks and Engineered Nanoparticles: Mitigation of Silver Nanoparticle Toxicity to Chlamydomonas reinhardtii by Algal-Produced Organic Compounds

机译:环境反馈和工程纳米颗粒:通过藻类生产的有机化合物减轻银纳米颗粒对莱茵衣藻的毒性

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摘要

The vast majority of nanotoxicity studies measures the effect of exposure to a toxicant on an organism and ignores the potentially important effects of the organism on the toxicant. We investigated the effect of citrate-coated silver nanoparticles (AgNPs) on populations of the freshwater alga Chlamydomonas reinhardtii at different phases of batch culture growth and show that the AgNPs are most toxic to cultures in the early phases of growth. We offer strong evidence that reduced toxicity occurs because extracellular dissolved organic carbon (DOC) compounds produced by the algal cells themselves mitigate the toxicity of AgNPs. We analyzed this feedback with a dynamic model incorporating algal growth, nanoparticle dissolution, bioaccumulation of silver, DOC production and DOC-mediated inactivation of nanoparticles and ionic silver. Our findings demonstrate how the feedback between aquatic organisms and their environment may impact the toxicity and ecological effects of engineered nanoparticles.
机译:绝大多数的纳米毒性研究都测量接触毒物对生物的影响,而忽略了生物对毒物的潜在重要影响。我们调查了柠檬酸盐包覆的银纳米颗粒(AgNPs)在分批培养生长的不同阶段对淡水藻类莱茵衣藻种群的影响,并表明AgNPs在生长的早期阶段对培养物最具毒性。我们提供有力的证据表明,由于藻类细胞自身产生的细胞外溶解有机碳(DOC)化合物可减轻AgNP的毒性,因此毒性降低。我们使用包含藻类生长,纳米颗粒溶解,银的生物富集,DOC产生以及DOC介导的纳米颗粒和离子银灭活的动力学模型分析了这种反馈。我们的发现表明,水生生物及其环境之间的反馈如何影响工程化纳米颗粒的毒性和生态效应。

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