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UNDERSTANDING MICRO-DROPLET INTERFACE BILAYERS FOR DEVELOPING BIOINSPIRED SENSORS

机译:理解用于开发生物激发传感器的微滴界面二元体

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Droplet-based biomolecular arrays form the basis for a new class of bioinspired material system, whereby decreasing the sizes of the droplets and increasing the number of droplets can lead to higher functional density for the array. In this paper, we report on a non-microfluidic approach to form and connect nanoliter-to-femtoliter, lipid-coated aqueous droplets in oil to form micro-droplet interface bilayers (μDIBs). Two different modes of operation are reported for dispensing a wide range of droplet sizes (2-200μm radius). Due to the high surface-area-to-volume ratios of microdroplets at these length scales, droplet shrinking is prominent, which affects the stability and lifetime of the bilayer. To better quantify these effects, we measure the shrinkage rates for 8 different water droplet/oil compositions and study the effect of lipid placement and lipid type on morphological changes to μDIBs.
机译:基于液滴的生物分子阵列形成新类生物悬浮材料系统的基础,从而降低液滴的尺寸并增加液滴的数量可以导致阵列的功能密度更高。在本文中,我们报告了一种非微流体方法来形成和连接纳米醇 - 羽毛分子,油状物中的脂质涂覆的油滴,形成微液滴接口双层(μDIB)。报告了两种不同的操作模式,用于分配宽范围的液滴尺寸(2-200μm半径)。由于这些长度尺度的微型电池的高表面积到体积比,滴注率突出,这影响了双层的稳定性和寿命。为了更好地量化这些效果,我们测量8种不同的水滴/油组合物的收缩率,并研究脂质放置和脂质类型对μDIBs的形态变化的影响。

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