首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A minimalist approach for generating picoliter to nanoliter droplets based on an asymmetrical beveled capillary and its application in digital PCR assay
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A minimalist approach for generating picoliter to nanoliter droplets based on an asymmetrical beveled capillary and its application in digital PCR assay

机译:基于不对称斜面毛细管生成纳米液滴的微量探测器的极简主义方法及其在数字PCR测定中的应用

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摘要

We developed a simple approach to form picoliter to nanoliter monodisperse droplets by controlling the interface of an asymmetrical beveled capillary (ABC), with minimalist device of a beveled capillary and a liquid driving module without the need of additional equipment or external forces. We observed an evident leap decrease effect in droplet size specially existed in a capillary with a beveled outlet interface instead of a conventional flat capillary within proper bevel angle and flow rate range, by which droplets with diameters of 2-5 times the inner diameter of the capillary could be spontaneously generated by surface tension. A preliminary theoretical explanation is given to the mechanism of droplet formation at the capillary beveled interface. Various factors affecting the droplet generation process were studied, including capillary hydrophilicity, bevel angle, beveled outlet size, and inner diameter of the capillary, and dispersed phase flow rate. In the optimized condition range, good linear relationship between the droplet volume and the capillary inner diameter (10-100 mu m) were obtained, which could be used to conveniently adjust the droplet volume with an adjustable droplet volume range up to 1000 times. Two types of capillaries made of fused silica and polytetrafluoroethylene (PTFE) were adopted for droplet generation using syringe pump, pneumatic pressure or gravity for liquid driving, with the relative standard deviations of droplet volume in the range of 1%-2%. To demonstrate its feasibility, the ABC approach was applied in digital PCR assay for absolute quantification of nucleic acids and identical result as a commercial instrument was obtained. The present approach has features of simple setup, easy to build without needing special microfabrication, low cost, and convenient to use, and could provide a minimalist solution for generating droplets in routine laboratories to perform single molecule analysis, single cell analysis, high-throughput screening, biochemical assays, and chemical synthesis.
机译:我们通过控制接口开发出一种简单的方法来形式皮升至纳升的单分散液滴的非对称倾斜的毛细管(ABC),具有斜面的毛细管的极简装置并且不需要额外的设备或外力的液体驱动模块。我们观察到在一个毛细管具有斜面出口接口而不是适当斜角内的常规平坦毛细管专门存在液滴尺寸的明显减小飞跃效果和流速范围,通过该微滴直径的内径的2-5倍的毛细管可以通过表面张力被自发产生的。初步理论解释是考虑到液滴形成的在毛细管倾斜界面的机制。影响微滴生成的过程的各种因素进行了研究,包括毛细管亲水性,斜角,倒角出口大小和毛细管的内径,和分散相流速。在优化的条件范围内,得到了良好的线性的液滴体积和毛细管内径(10-100微米)之间的关系,这可以用来方便地调节具有可调液滴体积范围内的液滴体积多达1000次。两种类型的由熔融二氧化硅和聚四氟乙烯(PTFE)的毛细管的使用注射泵,气动压力或重力供液体的驱动用于产生液滴通过,具有在1%-2%的范围内的液滴体积的相对标准偏差。为了证明其可行性,所述ABC方法在数字PCR测定施加用于核酸绝对定量和作为获得商用仪器相同的结果。本方法具有简单的设置的功能,容易地建立而不需要特殊的微细加工,成本低,并且便于使用,并且可以用于产生在常规实验室液滴进行单分子分析,单细胞分析,高通量提供最低限度的溶液筛选,生物化学测定,和化学合成。

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