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可组合的聚二甲基硅氧烷毛细管传感器阵列,用于单步和多种酶抑制剂分析。

Combinable poly(dimethyl siloxane) capillary sensor array for single-step and multiple enzyme inhibitor assays.

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai City, Osaka 599-8531, Japan.

出版信息

Lab Chip. 2012 Jan 7;12(1):204-8. doi: 10.1039/c1lc20651f. Epub 2011 Nov 15.

Abstract

We describe a new method for fabricating a capillary-type sensor, called a combinable poly(dimethyl siloxane) (PDMS) capillary (CPC) sensor. The method for preparing the CPC simplifies enzyme inhibitor assays into a simple, single step assay. The sample inhibitor solution is introduced by capillary action. This triggers the spontaneous dissolution of physically adsorbed fluorescent substrates, and the substrate mixes with the inhibitor. This is followed by competitive reaction with insoluble enzyme to give a fluorescence response. CPC is composed of a convex-shaped PDMS stick containing reagents immobilized in an insoluble coating, and a concave-shaped PDMS stick containing reagents immobilized in a soluble coating. Since the concave-shaped PDMS has a deeper channel than the convex structure, combining these PDMS sticks is like closing the zipper of a "freezer bag". This allows easy fabrication of "thin and long" capillary structures containing different reagents inside the same capillary, without the need for precise alignment. This method allows the immobilization of two reactive reagents, such as enzyme and substrate required for a single step assay, which are typically very difficult to immobilize using commercially available conventional capillaries. Furthermore, by simply arraying various CPCs, the CPC sensor allows multiple assays. Here, we carried out a single-step enzyme inhibitor assay using the CPC. In addition, two independent CPCs were arrayed to demonstrate multiple assaying of a protease inhibitor.

摘要

我们描述了一种新的毛细管型传感器的制造方法,称为可组合的聚二甲基硅氧烷(PDMS)毛细管(CPC)传感器。该方法制备 CPC 可将酶抑制剂测定简化为简单的一步测定。通过毛细作用引入样品抑制剂溶液。这会触发物理吸附的荧光底物自发溶解,并且底物与抑制剂混合。然后与不溶性酶进行竞争性反应,给出荧光响应。CPC 由一个凸形 PDMS 棒组成,其中包含固定在不溶性涂层中的试剂,和一个凹形 PDMS 棒,其中包含固定在可溶性涂层中的试剂。由于凹形 PDMS 具有比凸结构更深的通道,因此将这些 PDMS 棒组合在一起就像关闭“冷冻袋”的拉链一样。这允许在相同的毛细管内容易地制造包含不同试剂的“薄而长”的毛细管结构,而不需要精确对准。该方法允许固定两种反应性试剂,例如单步测定所需的酶和底物,这通常很难使用市售的常规毛细管固定。此外,通过简单地排列各种 CPC,可以实现多个测定。在这里,我们使用 CPC 进行了一步酶抑制剂测定。此外,还排列了两个独立的 CPC,以演示蛋白酶抑制剂的多重测定。

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