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Partition Coefficient Measurements in Picoliter Drops Using a Segmented Flow Microfluidic Device

机译:使用分段流动微流控装置在皮升滴液中进行分配系数测量

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A microfluidic method to rapidly measure the octanol-water partition coefficient in thousands of individual picoliter drops is described. AT-junction microfluidic chip is used to generate a segmented flow of monodisperse, fluorescein-laden water in octanol carrier fluid. The partitioning of individual drops reaches equilibrium in less than 2 s. Epifluorescence microscopy is used measure the partition coefficient of fluorescein as a function of pH. Results compare well with previous measurements using traditional shake-flask methods. The methods presented here are rapid, provide detailed statistics, and can be run in parallel, enabling the simultaneous partitioning of thousands of compounds for various applications such as drug development, environmental testing, and combinatorial chemistry. Microfluidic partitioning and extraction in picoliter drops may be useful for studying molecules and particles away from their equilibrium state and in cases with limited samples.
机译:描述了一种微流体方法,可以快速测量数千个微微升液滴中的辛醇-水分配系数。 AT结微流控芯片用于在辛醇载液中产生单分散的,装有荧光素的水的分段流。单个液滴的分配在不到2 s的时间内达到平衡。落射荧光显微镜用于测量荧光素的分配系数与pH的关系。结果与使用传统摇瓶法进行的以前的测量结果很好地比较。此处介绍的方法快速,提供详细的统计信息,并且可以并行运行,从而可以同时分配数千种化合物,以用于各种应用,例如药物开发,环境测试和组合化学。皮升滴中的微流体分配和提取对于研究分子和颗粒远离平衡状态以及样品量有限的情况可能有用。

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