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On measuring nanoparticle toxicity and clearance with Paramecium caudatum

机译:用尾草履虫测定纳米颗粒的毒性和清除率

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摘要

As the extent to which aquatic environments are polluted with nano-scale objects is becoming known, we are presented with an urgent need to study their effects on various forms of life and to clear and/or detoxify them. A range of methods exist to these ends, but a lack of inter-study comparability arising from an absence of experimental standardisation impedes progress. Here we present experiments that demonstrate measurement of orchestrated uptake and clearance of two environmentally-relevant nano- and micromaterials by a model aquatic microoraganism, Paramecium caudatum. Experiments were based on a simple, modular, multi-chamber platform that permits standardised control of organism behaviour and measurement of variables relevant to the study of nanotoxicology, including nanomaterial chemotaxis assays, bioaccumulation and deleterious effects on cell motility systems. Uptake of internalised materials may be estimated through the addition of a low-cost fluorescence spectrometer. P. caudatum cells can clear an estimated 0.7 fg of contaminant materials (or 161 of the particles used) per cell over a 5 mm distance per 6 hour experiment, whilst suffering few short-term adverse effects, suggesting that the organism and the platform used to investigate their properties are well-suited to a range of laboratory and field-based nanotoxicological studies.
机译:随着人们对水环境被纳米级物体污染的了解程度日益提高,我们迫切需要研究其对各种生命形式的影响以及清除和/或清除它们的毒性。为了达到这些目的,存在多种方法,但是由于缺乏实验标准化而导致的研究间可比性的缺乏阻碍了研究的进展。在这里,我们目前的实验表明,通过模型水生微兽性,尾草履带草,可以测量两种与环境相关的纳米材料和微材料的吸收和清除。实验基于一个简单的模块化多室平台,该平台允许对生物行为进行标准化控制,并测量与纳米毒理学研究相关的变量,包括纳米材料趋化性测定,生物蓄积和对细胞运动系统的有害影响。内在物质的摄取可以通过添加低成本的荧光光谱仪来估算。每6个小时的实验在5毫米长的距离上,尾尾假单胞菌细胞可以清除每个细胞估计0.7 fg的污染物(或使用的颗粒中的161个),同时几乎没有短期不良影响,这表明该生物体和所使用的平台研究其性质非常适合一系列实验室和基于现场的纳米毒理学研究。

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