Department of Chemical and Biomolecular Engineering, Yonsei University, 134 Sinchon-Dong, Seodaemoon-Gu, Seoul 120-749, Republic of Korea.
Biosens Bioelectron. 2012 Jan 15;31(1):529-36. doi: 10.1016/j.bios.2011.11.033. Epub 2011 Nov 28.
This paper presents a simple method to fabricate a microfluidic biosensor that is able to detect substrates for H(2)O(2)-generating oxidase. The biosensor consists of three components (quantum dot-enzyme conjugates, hydrogel microstructures, and a set of microchannels) that were hierarchically integrated into a microfluidic device. The quantum dot (QD)-enzyme conjugates were entrapped within the poly(ethylene glycol) (PEG)-based hydrogel microstructures that were fabricated within the microchannels by a photopatterning process. Glucose oxidase (GOX) and alcohol oxidase (AOX) were chosen as the model oxidase enzymes, conjugated to carboxyl-terminated CdSe/ZnS QDs, and entrapped within the hydrogel microstructures, which resulted in a fluorescent hydrogel microarray that was responsive to glucose or alcohol. The hydrogel-entrapped GOX and AOX were able to perform enzyme-catalyzed oxidation of glucose and alcohol, respectively, to produce H(2)O(2), which subsequently quenched the fluorescence of the conjugated QDs. The fluorescence intensity of the hydrogel microstructures decreased as the glucose and alcohol concentrations increased, and the detection limits of this system were found to be 50 μM of glucose and 70 μM of alcohol. Because each microchannel was able to carry out different assays independently, the simultaneous detection of glucose and alcohol was possible using our novel microfluidic device composed of multiple microchannels.
本文提出了一种简单的方法来制造能够检测产生 H(2)O(2)的氧化酶的底物的微流控生物传感器。该生物传感器由三个组件(量子点-酶缀合物、水凝胶微结构和一组微通道)组成,它们被分层集成到微流控设备中。量子点 (QD)-酶缀合物被包埋在聚(乙二醇)(PEG)基水凝胶微结构中,这些水凝胶微结构是通过光图案化工艺在微通道内制造的。葡萄糖氧化酶 (GOX) 和醇氧化酶 (AOX) 被选择作为模型氧化酶,与羧基末端的 CdSe/ZnS QD 缀合,并包埋在水凝胶微结构中,从而产生对葡萄糖或酒精有响应的荧光水凝胶微阵列。水凝胶包埋的 GOX 和 AOX 能够分别进行葡萄糖和酒精的酶促氧化,产生 H(2)O(2),随后猝灭共轭 QD 的荧光。水凝胶微结构的荧光强度随着葡萄糖和酒精浓度的增加而降低,并且该系统的检测限被发现为 50 μM 的葡萄糖和 70 μM 的酒精。由于每个微通道都能够独立进行不同的测定,因此使用我们由多个微通道组成的新型微流控设备可以同时检测葡萄糖和酒精。