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用于多重分析的液封编码微胶囊。

Liquid-capped encoded microcapsules for multiplex assays.

作者信息

Song Younghoon, Jeong Yunjin, Kwon Taehong, Lee Daewon, Oh Dong Yoon, Park Tae-Joon, Kim Junhoi, Kim Jiyun, Kwon Sunghoon

机构信息

Institutes of Entrepreneurial BioConvergence, Seoul National University, Seoul 151-742, Republic of Korea.

Nano Systems Institute, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Lab Chip. 2017 Jan 31;17(3):429-437. doi: 10.1039/c6lc01268j.

Abstract

Although droplet microfludics is a promising technology for handling a number of liquids of a single type of analyte, it has limitations in handling thousands of different types of analytes for multiplex assay. Here, we present a novel "liquid-capped encoded microcapsule", which is applicable to various liquid format assays. Various liquid drops can be graphically encoded and arrayed without repeated dispensing processes, evaporation, and the risk of cross-contamination. Millions of nanoliter-scale liquids are encapsulated within encoded microcapsules and self-assembled in microwells in a single dispensing process. The graphical code on the microcapsule enables identification of randomly assembled microcapsules in each microwell. We conducted various liquid phase assays including enzyme inhibitor screening, virus transduction, and drug-induced apoptosis tests. The results showed that our liquid handling technology can be utilized widely for various solution phase assays.

摘要

尽管微滴微流控技术是一种用于处理单一类型分析物的多种液体的有前景的技术,但它在处理用于多重分析的数千种不同类型的分析物方面存在局限性。在此,我们提出了一种新型的“液封编码微胶囊”,它适用于各种液体形式的分析。各种液滴可以进行图形编码和排列,而无需重复分配过程、蒸发以及交叉污染的风险。数百万纳升规模的液体在单个分配过程中被封装在编码微胶囊中,并在微孔中自组装。微胶囊上的图形代码能够识别每个微孔中随机组装的微胶囊。我们进行了各种液相分析,包括酶抑制剂筛选、病毒转导和药物诱导的细胞凋亡测试。结果表明,我们的液体处理技术可广泛用于各种溶液相分析。

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