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一种用于管理空气基质数字微流控设备中生化反应蒸发的溶剂补充溶液。

A solvent replenishment solution for managing evaporation of biochemical reactions in air-matrix digital microfluidics devices.

作者信息

Jebrail Mais J, Renzi Ronald F, Sinha Anupama, Van De Vreugde Jim, Gondhalekar Carmen, Ambriz Cesar, Meagher Robert J, Branda Steven S

机构信息

Biotechnology and Bioengineering, Sandia National Laboratories, Livermore, CA, USA.

出版信息

Lab Chip. 2015 Jan 7;15(1):151-8. doi: 10.1039/c4lc00703d.

Abstract

Digital microfluidics (DMF) is a powerful technique for sample preparation and analysis for a broad range of biological and chemical applications. In many cases, it is desirable to carry out DMF on an open surface, such that the matrix surrounding the droplets is ambient air. However, the utility of the air-matrix DMF format has been severely limited by problems with droplet evaporation, especially when the droplet-based biochemical reactions require high temperatures for long periods of time. We present a simple solution for managing evaporation in air-matrix DMF: just-in-time replenishment of the reaction volume using droplets of solvent. We demonstrate that this solution enables DMF-mediated execution of several different biochemical reactions (RNA fragmentation, first-strand cDNA synthesis, and PCR) over a range of temperatures (4-95 °C) and incubation times (up to 1 h or more) without use of oil, humidifying chambers, or off-chip heating modules. Reaction volumes and temperatures were maintained roughly constant over the course of each experiment, such that the reaction kinetics and products generated by the air-matrix DMF device were comparable to those of conventional benchscale reactions. This simple yet effective solution for evaporation management is an important advance in developing air-matrix DMF for a wide variety of new, high-impact applications, particularly in the biomedical sciences.

摘要

数字微流控(DMF)是一种用于广泛生物和化学应用的样品制备与分析的强大技术。在许多情况下,希望在开放表面上进行DMF,使得液滴周围的基质为环境空气。然而,空气基质DMF形式的实用性因液滴蒸发问题而受到严重限制,特别是当基于液滴的生化反应需要长时间高温时。我们提出了一种在空气基质DMF中管理蒸发的简单解决方案:使用溶剂液滴及时补充反应体积。我们证明,该解决方案能够在一系列温度(4 - 95°C)和孵育时间(长达1小时或更长时间)下,在不使用油、加湿室或芯片外加热模块的情况下,通过DMF介导执行几种不同的生化反应(RNA片段化、第一链cDNA合成和PCR)。在每个实验过程中,反应体积和温度大致保持恒定,使得空气基质DMF装置产生的反应动力学和产物与传统台式反应相当。这种简单而有效的蒸发管理解决方案是开发用于各种新型高影响力应用(特别是在生物医学科学领域)的空气基质DMF的一项重要进展。

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