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Two-Dimensional Algal Collection and Assembly by Combining AC-Dielectrophoresis with Fluorescence Detection for Contaminant-Induced Oxidative Stress Sensing

机译:交流电介电泳与荧光检测相结合的二维藻类收集和组装用于污染物诱导的氧化应激传感。

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摘要

An alternative current (AC) dielectrophoretic lab-on-chip setup was evaluated as a rapid tool of capture and assembly of microalga Chlamydomonas reinhardtii in two-dimensional (2D) close-packed arrays. An electric field of 100 V·cm−1, 100 Hz applied for 30 min was found optimal to collect and assemble the algae into single-layer structures of closely packed cells without inducing cellular oxidative stress. Combined with oxidative stress specific staining and fluorescence microscopy detection, the capability of using the 2D whole-cell assembly on-chip to follow the reactive oxygen species (ROS) production and oxidative stress during short-term exposure to several environmental contaminants, including mercury, methylmercury, copper, copper oxide nanoparticles (CuO-NPs), and diuron was explored. The results showed significant increase of the cellular ROS when C. reinhardtii was exposed to high concentrations of methylmercury, CuO-NPs, and 10−5 M Cu. Overall, this study demonstrates the potential of combining AC-dielectrophoretically assembled two-dimensional algal structures with cell metabolic analysis using fluorescence staining, as a rapid analytical tool for probing the effect of contaminants in highly impacted environment.
机译:交流电(AC)电泳芯片实验室设置被评估为捕获和组装二维(2D)密排阵列中的微藻衣藻的快速工具。发现施加100 V·cm -1 ,100 Hz的电场30分钟是最适合收集和组装藻类为紧密堆积细胞的单层结构而不会引起细胞氧化应激的最佳方法。与氧化应激特异性染色和荧光显微镜检测相结合,能够在短时间暴露于几种环境污染物(包括汞)的情况下,使用片上2D全细胞组件跟踪活性氧(ROS)的产生和氧化应激,研究了甲基汞,铜,氧化铜纳米颗粒(CuO-NPs)和二ur隆。结果表明,当莱茵衣藻暴露于高浓度的甲基汞,CuO-NPs和10 -5 M Cu时,细胞ROS显着增加。总的来说,这项研究证明了将交流电介电泳组装的二维藻类结构与使用荧光染色的细胞代谢分析相结合的潜力,这是一种用于在高度影响的环境中探测污染物影响的快速分析工具。

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