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聚合物微芯片装置的化学修饰

Chemical modification of polymeric microchip devices.

作者信息

Muck Alexander, Svatos Ales

机构信息

Mass Spectrometry Research Group, Max Planck Institute for Chemical Ecology, Hans-Knöll-Strasse 8, D-07745 Jena, Germany.

出版信息

Talanta. 2007 Dec 15;74(3):333-41. doi: 10.1016/j.talanta.2007.09.012. Epub 2007 Sep 19.

Abstract

Analytical polymeric microchips in both fluidic and array formats offer short analysis times, coupling of many sample processing and chemical reaction steps on one platform with minimal sample and reagent consumption, as well as low cost, minimal fabrication times and disposability. However, the invariable bulk properties of most commercial polymers have driven researchers to develop new modification strategies. This article critically reviews the scope and development of chemical modifications of such polymeric chips since 2003. Surface modifications were based on chemical derivatization or activation of surface layers with reagent solutions, reactive gases and irradiation. Bulk modification of polymer chips used newly incorporation of monomers with selective chemical functionalities throughout the bulk polymer material and integrated the chip modification and fabrication into a single step. Such modifications hold a great promise for establishing a true 'lab-on-chip' as can be seen from many novel applications for modulating electroosmosis, suppressing protein adsorption in microchip capillary electrophoretic separations, extraction of analytes and for zone-specific binding of enzymes and other biomolecules.

摘要

流体形式和阵列形式的分析型聚合物微芯片具有分析时间短的特点,能在一个平台上整合多个样品处理和化学反应步骤,且样品和试剂消耗极少,同时还具备低成本、制造时间短和可一次性使用的优势。然而,大多数商用聚合物一成不变的整体性质促使研究人员开发新的改性策略。本文批判性地回顾了自2003年以来此类聚合物芯片化学改性的范围和发展情况。表面改性基于用试剂溶液、反应性气体和辐射对表面层进行化学衍生化或活化。聚合物芯片的整体改性是通过在整个块状聚合物材料中全新引入具有选择性化学功能的单体,并将芯片改性和制造整合为一个步骤来实现的。从许多用于调节电渗、抑制微芯片毛细管电泳分离中的蛋白质吸附、分析物提取以及酶和其他生物分子的区域特异性结合的新颖应用中可以看出,此类改性对于建立真正的“芯片实验室”具有巨大潜力。

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