Kim Jiyun, Bae Sangwook, Song Seowoo, Chung Keumsim, Kwon Sunghoon
Nano Systems Institute, Seoul National University , Seoul 151-744, South Korea.
QuantaMatrix Inc., Se oul National University , Seoul 151-744, South Korea.
Biomicrofluidics. 2015 Jul 29;9(4):044109. doi: 10.1063/1.4927590. eCollection 2015 Jul.
Fabrication methods for the development of multiplexed immunoassay platforms primarily depend on the individual functionalization of reaction chambers to achieve a heterogeneous reacting substrate composition, which increases the overall manufacturing time and cost. Here, we describe a new type of low-cost fabrication method for a scalable immunoassay platform based on cotton threads. The manufacturing process involves the fabrication of functionalized fibers and the arrangement of these fibers into a bundle; this bundle is then sectioned to make microarray-like particles with a predefined surface architecture. With these sections, composed of heterogeneous thread fragments with different types of antibodies, we demonstrated quantitative and 7-plex immunoassays. We expect that this methodology will prove to be a versatile, low-cost, and highly scalable method for the fabrication of multiplexed bioassay platforms.
用于开发多重免疫分析平台的制造方法主要依赖于反应腔室的个体化功能化,以实现异质反应底物组成,这增加了整体制造时间和成本。在此,我们描述了一种基于棉线的可扩展免疫分析平台的新型低成本制造方法。制造过程包括功能化纤维的制造以及将这些纤维排列成束;然后将该束切片以制成具有预定义表面结构的微阵列样颗粒。利用由带有不同类型抗体的异质线片段组成的这些切片,我们展示了定量和7重免疫分析。我们期望这种方法将被证明是一种用于制造多重生物分析平台的通用、低成本且高度可扩展的方法。