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Use of Swimming Cells of Green Paramecia for Detection of Toxic Rare Earth lons at Lethal and Sub-lethal Concentration

机译:在致死和亚麻致死浓度下使用绿色遗址的游泳细胞检测毒性稀土

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Paramecium bursaria is an unicellular organism that lives widely in fresh water environments such as rivers and ponds. Recent studies have suggested that in vivo cellular robotics using the cells of P. bursaria as micro-machines controllable under electrical and optical stimuli, has a variety of engineering applications such as transport of micro-sized particles in the capillary systems. The present study aimed to test if the swimming cells of P. bursaria, implementabie in capillaries or on chips, are applicable for detection of metal ions. For model assays, rare earth elements (REEs) were chosen as target chemicals. In P. bursaria, LC_(50) values for REE ions ranged between 2.0 and 62.7 μM. Among them, Sc was shown to be most toxic. In addition to the lethal impacts of REE ions, most of REE ions at sub-lethal concentrations at around 10-30 μM, showed inhibitory action against the motility of the cells during the electrically forced motility known as galvanotaxisis. In conclusion, in the non-lethal ranges of REE concentration, swimming cells of P. bursaria report the presence of REE ions, by lowering the motility.
机译:草履虫是单细胞生物,在淡水环境,如河流和池塘广泛的生活。最近的研究表明,在体内使用P. bursaria微机器的细胞中的细胞机器人下电和光刺激控制的,有各种各样的工程应用,例如在毛细管系统微尺寸颗粒的运输。本研究的目的是测试,如果P. bursaria,implementabie在毛细管或芯片上的游动细胞,适用于检测金属离子。对于模型测定,稀土元素(稀土元素)被选为目标化学品。在P. bursaria,对于稀土元素离子LC_(50)值的范围μM2.0和62.7之间。其中,SC被证明是最毒的。除了稀土元素离子的致命影响,大部分稀土离子中的在约10-30μM亚致死浓度,显示出被称为galvanotaxisis电被迫运动时靠在细胞的运动抑制作用。总之,在稀土元素浓度的非致命性的范围,P的游泳细胞bursaria报告REE离子的存在,通过降低运动性。

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