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Gas/liquid sensing via chemotaxis of Euglena cells confined in an isolated micro-aquarium

机译:通过封闭的微型水族馆中的Euglena细胞的趋化性进行气/液感测

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We demonstrate on-chip gas/liquid sensing by using the chemotaxis of live bacteria (Euglena gracilis) confined in an isolated micro-aquarium, and gas/liquid permeation through porous polydimethylsiloxane (PDMS). The sensing chip consisted of one closed micro-aquarium and two separated bypass microchannels along the perimeter of the micro-aquarium. Test gas/liquid and reference samples were introduced into the two individual microchannels separately, and the gas/liquid permeated through the PDMS walls and dissolved in the micro-aquarium water, resulting in a chemical concentration gradient in the micro-aquarium. By employing the closed micro-aquarium isolated from sample flows, we succeeded in measuring the chemotaxis of Euglena for a gas substance quantitatively, which cannot be achieved with the conventional flow-type or hydro-gel-type microfluidic devices. We found positive (negative) chemotaxis for CO2 concentrations below (above) 15%, with 64 ppm as the minimum concentration affecting the cells. We also observed chemotaxis for ethanol and H2O2. By supplying culture medium via the microchannels, the Euglena culture remained alive for more than 2 months. The sensing chip is thus useful for culturing cells and using them for environmental toxicityutrition studies by monitoring their motion.
机译:我们通过使用限制在一个隔离的微型水族馆中的活细菌(Euglena gracilis)的趋化性和通过多孔聚二甲基硅氧烷(PDMS)的气/液渗透来证明片上气/液传感。传感芯片由一个封闭的微型水族箱和沿着微型水族箱周边的两个独立的旁路微通道组成。将测试气/液和参考样品分别引入两个单独的微通道中,并且气/液通过PDMS壁渗透并溶解在微水族馆水中,从而在微水族馆中产生化学浓度梯度。通过使用从样品流中分离出的封闭式微水族馆,我们成功地定量测量了Euglena对气体物质的趋化性,这是常规的流动型或水凝胶型微流体装置无法实现的。我们发现低于(高于)15%的CO2浓度具有正(负)趋化性,影响细胞的最低浓度为64 ppm。我们还观察到乙醇和H2O2的趋化性。通过微通道提供培养基,裸藻培养物存活了两个多月。因此,该传感芯片可用于培养细胞,并通过监测其运动将其用于环境毒性/营养研究。

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