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Microfluidic Gas Sensing with Living Microbial Cells Confined in A Microaquarium

机译:封闭在微水族馆中的活微生物细胞的微流体气体传感

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We investigated on-chip cytotoxicity gas sensing using the bacterial chemotaxis of Euglena confined in a microaquarium. The sensor chip made from PDMS had one microaquarium and two microfluidic channels passing aside of the microaquarium. The chemotactic microbial cells were confined in the microaquarium, whereas two gases (one sample and one reference) flowed in the two isolated microchannels. Gas molecules move from the microchannels into the microaquarium by permeation through porous PDMS wall, and dissolve into the water in the microaquarium, where Euglena cells are swimming. The chemotactic movements of Euglena were observed with an optical microscope and measured as traces in real time. By injecting CO_2 and air into each microchannel separately, the Euglena cells in the microaquarium moved to air side, escaping from CO_2. This observation showed that the concentration gradient of CO_2 was produced in the water in the microaquarium. The CO_2-avoiding movement of Euglena was increased largely at a CO_2 concentration of 40%, and then moderately increased above 60%. Some Euglena cells stopped swimming at the air side of the microaquarium and remained there even after CO_2 has been removed, which can be used as the indicator of CO_2 history.
机译:我们研究了使用微型水族馆中的Euglena的细菌趋化作用对芯片的细胞毒性气体传感。由PDMS制成的传感器芯片具有一个微水族馆和两个从微水族馆旁通过的微流体通道。趋化性微生物细胞被限制在微水族馆中,而两种气体(一种样品和一种参比物)则在两个隔离的微通道中流动。气体分子通过多孔PDMS壁渗透而从微通道移入微水族馆,并溶解在藻类细胞在其中游动的微水族馆的水中。用光学显微镜观察Euglena的趋化运动,并以痕量实时测量。通过分别将CO_2和空气注入每个微通道,微水族馆中的Euglena细胞移至空气侧,从CO_2逸出。该观察表明,在微水族馆的水中产生了CO_2的浓度梯度。裸藻的CO_2逃逸运动在CO_2浓度为40%时大幅增加,然后在60%以上适度增加。一些Euglena细胞停止在微水族馆的空气侧游动,甚至在去除CO_2之后仍停留在那里,这可以用作CO_2历史的指标。

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