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The challenges of testing metal and metal oxide nanoparticles in algal bioassays: titanium dioxide and gold nanoparticles as case studies

机译:在藻类生物测定中测试金属和金属氧化物纳米颗粒的挑战:案例研究中的二氧化钛和金纳米颗粒

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Aquatic toxicology of engineered nanoparticles is challenged by methodological difficulties stemming partly from highly dynamic and poorly understood behavior of nanoparticles in biological test systems. In this paper scientific and technical challenges of testing not readily soluble nanoparticles in standardised algal growth inhibition tests are highlighted with specific focus on biomass quantification methods. This is illustrated through tests with TiO_2 and Au nanoparticles, for which cell-nanoparticle interactions and behavior was studied during incubation. Au NP coating layers changed over time and TiO_2 nanoparticle aggregation/agglomeration increased as a function of concentration. Three biomass surrogate measuring techniques were evaluated (coulter counting, cell counting in haemocytometer, and fluorescence of pigment extracts) and out of these the fluorometric methods was found to be most suitable. Background correction was identified as a key issue for biomass quantification, complicated by algae-particle interactions and nanoparticle transformation. Optimisation of. the method is needed.to reduce further particle interference on measurements.
机译:工程化纳米粒子的水生毒理学受到方法难题的挑战,这种方法难题部分源于生物测试系统中纳米粒子的高度动态和鲜为人知的行为。在本文中,突出强调了在标准藻类生长抑制测试中测试难溶纳米颗粒的科学技术挑战,重点是生物量定量方法。通过用TiO_2和Au纳米粒子进行的测试可以说明这一点,对于它们在孵育过程中研究了细胞-纳米粒子的相互作用和行为。 Au NP涂层随时间变化,TiO_2纳米颗粒的聚集/团聚随浓度增加而增加。评估了三种生物量替代物测量技术(库尔特计数,血细胞计数器中的细胞计数以及色素提取物的荧光),其中最有效的方法是荧光法。背景校正被确定为生物量定量的关键问题,并因藻类-颗粒相互作用和纳米颗粒转化而变得复杂。优化。需要该方法以减少对测量的进一步粒子干扰。

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