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聚合物薄膜中背景荧光的非线性衰减——材料综述及其如何使微流控分析系统中的荧光检测复杂化

Nonlinear decrease of background fluorescence in polymer thin-films - a survey of materials and how they can complicate fluorescence detection in microTAS.

作者信息

Hawkins Kenneth R, Yager Paul

机构信息

Department of Bioengineering, University of Washington, Seattle, Washington, USA.

出版信息

Lab Chip. 2003 Nov;3(4):248-52. doi: 10.1039/b307772c. Epub 2003 Sep 18.

Abstract

Polymers and plastics are receiving increased attention as materials for microfluidics and microTAS applications. Given the ubiquity of fluorescence detection techniques in micro-analytical systems, the fluorescence properties of polymers and plastics should not be overlooked. We survey some commonly available polymer thin-films for their fluorescence behaviour under standardized conditions to determine which materials are most suitable for high-sensitivity fluorescence detection lab chips. The initial fluorescence intensities of some of the materials surveyed were significantly higher than glass and fused silica controls, and decreased over the three hour period with complex kinetics. We then discuss how this has confounded fluorescence detection in our analytical context, and possible mechanisms for the decrease.

摘要

聚合物和塑料作为微流控和微全分析系统应用的材料正受到越来越多的关注。鉴于荧光检测技术在微分析系统中的广泛应用,聚合物和塑料的荧光特性不容忽视。我们研究了一些常见的聚合物薄膜在标准条件下的荧光行为,以确定哪些材料最适合用于高灵敏度荧光检测实验室芯片。所研究的一些材料的初始荧光强度明显高于玻璃和熔融石英对照物,并且在三小时内随着复杂的动力学过程而降低。然后我们讨论了这在我们的分析环境中如何混淆荧光检测以及降低的可能机制。

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