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Versatile microfluidic total internal reflection (TIR)-based devices: Application to microbeads velocity measurement and single molecule detection with upright and inverted microscope

机译:基于多功能微流全内反射(TIR)的设备:应用于微珠速度测量和立式和倒置显微镜的单分子检测

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A poly(dimethylsiloxane) (PDMS) chip for Total Internal Reflection (TIR)-based imaging and detection has been developed using Si bulk micromachining and PDMS casting. In this paper, we report the applications of the chip on both inverted and upright fluorescent microscopes and confirm that two types of sample delivery platforms, PDMS microchannel and glass microchannel, can be easily integrated depending on the magnification of an objective lens needed to visualize a sample. Although any device configuration can be achievable, here we performed two experiments to demonstrate the versatility of the microfluidic TIR-based devices. The first experiment was velocity measurement of Nile red microbeads with nominal diameter of 500 nm in a pressure-driven flow. The time-sequenced fluorescent images of microbeads, illuminated by an evanescent field, were cross-correlated by a Particle Image Velocimetry (PIV) program to obtain near-wall velocity field of the microbeads at various flow rates from 500 nl/min to 3000 nl/min. We then evaluated the capabilities of the device for Single Molecule Detection (SMD) of fluorescently labeled DNA molecules from 30 bp to 48.5 kbp and confirm that DNA molecules as short as 1105 bp were detectable. Our versatile, integrated device could provide low-cost and fast accessibility to Total Internal Reflection Fluorescent Microscopy (TIRFM) on both conventional upright and inverted microscopes. It could also be a useful component in a Micro-Total Analysis System (μ-TAS) to analyze nanoparticles or biomolecules near-wall transport or motion.
机译:使用硅本体微加工和PDMS浇铸技术开发了一种基于全内反射(TIR)成像和检测的聚二甲基硅氧烷(PDMS)芯片。在本文中,我们报告了该芯片在倒置荧光显微镜和直立荧光显微镜上的应用,并确认可以轻松组合两种类型的样品输送平台PDMS微通道和玻璃微通道,具体取决于物镜放大倍率以可视化显微镜。样品。尽管可以实现任何设备配置,但​​在这里我们进行了两个实验,以证明基于微流体TIR的设备的多功能性。第一个实验是在压力驱动流中测量标称直径为500 nm的尼罗红微珠的速度。由van逝场照射的按时间顺序排列的微珠荧光图像,通过粒子图像测速(PIV)程序进行互相关,以获取从500 nl / min到3000 nl的各种流速下微珠的近壁速度场/分钟。然后,我们评估了单分子检测(SMD)荧光标记DNA分子(从30 bp至48.5 kbp)的功能,并确认短至1105 bp的DNA分子是可检测的。我们的多功能集成设备可为传统立式和倒置显微镜提供低成本,快速访问全内反射荧光显微镜(TIRFM)的功能。它也可能是微总分析系统(μ-TAS)中有用的组件,用于分析纳米粒子或生物分子的近壁传输或运动。

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