Henares Terence G, Takaishi Masayuki, Yoshida Naoya, Terabe Shigeru, Mizutani Fumio, Sekizawa Ryuichi, Hisamoto Hideaki
Graduate School of Material Science, University of Hyogo, 3-2-1 Kouto, Kamigori-cho, Ako-gun, Hyogo 678-1297, Japan.
Anal Chem. 2007 Feb 1;79(3):908-15. doi: 10.1021/ac061245i.
A general and simple implementation of simultaneous multiparametric sensing in a single microchip is presented by using a capillary-assembled microchip (CAs-CHIP) integrated with the plural different reagent-release capillaries (RRCs), acting as various biochemical sensors. A novel "drop-and-sip" technique of fluid handling is performed with a microliter droplet of a model sample solution containing proteases (trypsin, chymotrypsin, thrombin, elastase) and divalent cations (Ca2+, Zn2+, Mg2+) that passes through the microchannel with the aid of a micropipette as a vacuum pump, concurrently filling each RRC via capillary force. To avert the evaporation of the nanoliter sample volume in each capillary, PDMS oil is dropped on the outlet hole of the CAs-CHIP exploiting the capillary force that results in spontaneous sealing of all the RRCs. In addition, this high-speed sample introduction alleviates the possibility of protein adsorption and capillary cross-contamination, allowing a reliable and multianalyte determination of a sample containing many different proteases and divalent cations by using the fluorescence image analysis. Presented results suggested the possible application of this microchip in the field of drug discovery and systems biology.
通过使用集成了多个不同试剂释放毛细管(RRC)的毛细管组装微芯片(CAs-CHIP),展示了一种在单个微芯片中实现同时多参数传感的通用且简单的方法,这些RRC充当各种生化传感器。利用微升的含有蛋白酶(胰蛋白酶、胰凝乳蛋白酶、凝血酶、弹性蛋白酶)和二价阳离子(Ca2+、Zn2+、Mg2+)的模型样品溶液液滴,借助作为真空泵的微量移液器使其通过微通道,同时通过毛细作用力填充每个RRC,从而实现了一种新颖的“滴吸”流体处理技术。为避免每个毛细管中纳升样品体积的蒸发,利用毛细作用力将聚二甲基硅氧烷(PDMS)油滴在CAs-CHIP的出口孔上,这会导致所有RRC自动密封。此外,这种高速样品引入减少了蛋白质吸附和毛细管交叉污染的可能性,通过荧光图像分析能够对含有多种不同蛋白酶和二价阳离子的样品进行可靠的多分析物测定。所展示的结果表明该微芯片在药物发现和系统生物学领域具有潜在应用。