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Nano-aquarium with microfluidic structures for dynamic analysis of Cryptomonas and Phormidium fabricated by femtosecond laser direct writing of photostructurable glass

机译:飞秒激光直接写入可光结构玻璃制成的具有微流体结构的纳米水族馆,用于动态分析隐孢子虫和Ph

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摘要

We demonstrate fabrication of microchips with microfluidic structures for dynamic analysis of living cells using a femtosecond (fs) laser. Fs laser direct writing followed by annealing and successive wet etching in dilute hydrofluoric (HF) acid solution resulted in formation of three dimensional (3D) hollow microstructures embedded in photostructurable glass. The embedded microchannel structure enabled us to analyze unique phenomenon of Cryptomonas, which suddenly swims very fast under certain condition. Vector analysis of the driving force for the rapid motion was also carried out by introducing nano-beads into the microchannel, in which Cryptomonas was encapsulated. We also fabricated a microchip for observation of Phormidium moving toward a seedling root, which accelerates growth of the seedling. Using the embedded microchannel in the microchip, observation of Phormidium assemblage to the seedling root was easily carried out. Such microchips with microfluidic structures, referred to as a nano-aquarium, realize the efficient and highly functional observation of living cells.
机译:我们演示了使用飞秒(fs)激光对活细胞进行动态分析的具有微流体结构的微芯片的制造。 Fs激光直接写入,然后在稀氢氟酸(HF)溶液中进行退火和连续湿法蚀刻,导致在可光结构化玻璃中嵌入了三维(3D)中空微结构。嵌入式微通道结构使我们能够分析隐孢子虫的独特现象,隐孢子虫在一定条件下突然游动非常快。还通过将纳米珠引入微囊中进行了快速运动驱动力的矢量分析,微囊中包埋了隐孢子虫。我们还制造了一个微芯片,用于观察Ph向幼苗根部移动,从而加速了幼苗的生长。使用微芯片中嵌入的微通道,可以很容易地观察到or与幼苗根的结合。这种具有微流体结构的微芯片,称为纳米水族箱,实现了对活细胞的高效且高度功能化的观察。

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