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用于生物分子包封的微纳加工设备。

Microfabricated devices for biomolecule encapsulation.

机构信息

Department of Bioengineering, Stanford University, Stanford, CA, USA.

出版信息

Electrophoresis. 2012 Sep;33(17):2639-49. doi: 10.1002/elps.201200189.

Abstract

Biomolecule encapsulation in droplets is important for miniaturizing biological assays to reduce reagent consumption, cost and time of analysis, and can be most effectively achieved by using microfabricated devices. Microfabricated fluidic devices can generate emulsified drops of uniform size with controlled dimensions and contents. Biological and chemical components such as cells, microgels, beads, hydrogel precursors, polymer initiators, and other droplets can be encapsulated within these drops. Encapsulated emulsions are appealing for a variety of applications since drops can be used as tiny reaction vessels to perform high-throughput reactions at fast rates, consuming minimal sample and solvent amounts due to the small size (micron diameters) of the emulsion drops. Facile mixing and droplet coalescence allow for a diversity of assays to be performed on-chip with tunable parameters. The simplicity of operation and speed of analysis with microencapsulated drops lends itself well to an array of quantitative biomolecular studies such as directed evolution, single-molecule DNA amplification, single-cell encapsulation, high-throughput sequencing, enzyme kinetics, and microfluidic cell culture. This review highlights recent advances in the field of microfabricated encapsulating devices, emphasizing the development of emulsifying encapsulations, device design, and current assays that are performed using encapsulating droplets.

摘要

生物分子的液滴包封对于将生物分析小型化以减少试剂消耗、分析成本和时间非常重要,而使用微制造设备可以最有效地实现这一点。微制造的流体设备可以生成具有受控尺寸和内容的均匀大小的乳化液滴。细胞、微凝胶、珠粒、水凝胶前体、聚合物引发剂和其他液滴等生物和化学成分可以封装在这些液滴内。由于乳液液滴的尺寸很小(微米直径),因此可以将封装的乳液用作微小的反应容器,以快速进行高通量反应,从而消耗最少的样品和溶剂量,因此封装乳液在各种应用中都很有吸引力。简便的混合和液滴聚结允许在芯片上进行各种具有可调参数的测定。微封装液滴具有操作简单和分析速度快的特点,非常适合一系列定量生物分子研究,如定向进化、单分子 DNA 扩增、单细胞包封、高通量测序、酶动力学和微流控细胞培养。本文综述了微制造封装设备领域的最新进展,强调了乳化封装、器件设计以及使用封装液滴进行的当前测定的发展。

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