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Submillisecond mixing in a continuous-flow microfluidic mixer utilizing mid-infrared hyperspectral imaging detection

机译:使用中红外高光谱成像检测在连续流微流混合器中进行亚毫秒混合

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摘要

We report a continuous-flow, microfluidic mixer utilizing mid-infrared hyperspectral imaging detection, with an experimentally determined, submillisecond mixing time. The simple and robust mixer design has the microfluidic channels cut through a polymer spacer that is sandwiched between two IR transparent windows. The mixer hydrodynamically focuses the sample stream with two side flow channels, squeezing it into a thin jet and initiating mixing through diffusion and advection. The detection system generates a mid-infrared hyperspectral absorbance image of the microfluidic sample stream. Calibration of the hyperspectral image yields the mid-IR absorbance spectrum of the sample versus time. A mixing time of 269 μs was measured for a pD jump from 3.2 to above 4.5 in a D2O sample solution of adenosine monophosphate (AMP), which acts as an infrared pD indicator. The mixer was further characterized by comparing experimental results with a simulation of the mixing of an H2O sample stream with a D2O sheath flow, showing good agreement between the two. The IR microfluidic mixer eliminates the need for fluorescence labeling of proteins with bulky, interfering dyes, because it uses the intrinsic IR absorbance of the molecules of interest, and the structural specificity of IR spectroscopy to follow specific chemical changes such as the protonation state of AMP.
机译:我们报告了利用中红外高光谱成像检测的连续流微流混合器,并通过实验确定了亚毫秒的混合时间。简单而坚固的混合器设计具有微流体通道,该通道穿过聚合物隔片,该聚合物隔片夹在两个IR透明窗口之间。混合器通过两个侧流通道对样品流进行流体动力学聚焦,将其压缩成细喷流,并通过扩散和对流引发混合。该检测系统生成微流体样品流的中红外高光谱吸收图像。高光谱图像的校准产生了样品的中红外吸收光谱随时间的变化。在D2O单磷酸腺苷(AMP)的D2O样品溶液中,pD从3.2跃升至4.5以上,测量到269μs的混合时间,该样品溶液用作红外pD指示剂。通过将实验结果与模拟的H2O样品流与D2O鞘流的混合进行比较,对混合器进行了进一步表征,表明两者之间具有很好的一致性。红外微流体混合器无需使用笨重的干扰染料对蛋白质进行荧光标记,因为它利用了目标分子的固有红外吸收率和红外光谱的结构特异性来跟踪特定的化学变化(例如AMP的质子化状态) 。

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