Schudel Benjamin R, Choi Charles J, Cunningham Brian T, Kenis Paul J A
University of Illinois at Urbana-Champaign, Chemical & Biomolecular Engineering, Urbana, IL 61801, USA.
Lab Chip. 2009 Jun 21;9(12):1676-80. doi: 10.1039/b901999e. Epub 2009 Apr 9.
This paper reports the design, fabrication and validation of a microfluidic well plate for combinatorial screening applications. Each well within the array is comprised of two 200 picoliter compartments that each contain a photonic crystal biosensor to enable the on-chip, in situ detection of (bio-) molecular binding events. This microfluidic chip utilizes arrays of Actuate-to-Open valves to isolate all compartments, which allows the chip to be decoupled from pneumatic control lines and thus to be transported freely between filling, sensing and characterization platforms. A proof-of-principle 4 x 4 protein/antibody binding assay was performed to demonstrate the discrete mixing and on-chip sensing capabilities.
本文报道了一种用于组合筛选应用的微流控孔板的设计、制造和验证。阵列中的每个孔由两个200皮升的隔室组成,每个隔室都包含一个光子晶体生物传感器,以实现对(生物)分子结合事件的芯片上原位检测。这种微流控芯片利用致动打开阀阵列来隔离所有隔室,这使得芯片能够与气动控制线分离,从而可以在填充、传感和表征平台之间自由运输。进行了原理验证的4×4蛋白质/抗体结合试验,以证明离散混合和芯片上传感能力。