首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Direct patterning of molecularly imprinted microdot arrays for sensors and biochips
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Direct patterning of molecularly imprinted microdot arrays for sensors and biochips

机译:直接图案化传感器和生物芯片的分子印迹微点阵列

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摘要

We have used fountain pen microlithography to deposit arrays of molecularly imprinted polymer microdots on flat substrates. We visualize analyte binding to the dots by fluorescence microscopy with the aid of fluorescein as a model analyte. Elution and readsorption of the analyte to the MIP dots were possible if the porosity of the dots was improved by a sacrificial polymeric porogen. The imprinting effect was confirmed by using compounds structurally related to fluorescein. In addition, we show with another MIP specific to 2,4-D that, apart from the direct measurement of the binding of fluorescent compounds, a competitive immunoassay-type format can also be used to transduce the binding. We believe that this technique has a strong potential for the fabrication of biomimetic microchips and other types of integrated biosensors.
机译:我们已经使用钢笔微光刻技术在平坦的基板上沉积了分子印迹聚合物微点阵列。我们借助于荧光素作为模型分析物,通过荧光显微镜观察分析物与点的结合。如果牺牲聚合物致孔剂改善了点的孔隙率,则有可能将分析物洗脱和重新吸附到MIP点。通过使用与荧光素结构相关的化合物来确认印迹效果。另外,我们用对2,4-D特异的另一个MIP显示,除了直接测量荧光化合物的结合以外,竞争性免疫测定类型的格式也可以用于转导结合。我们认为,该技术在仿生微芯片和其他类型的集成生物传感器的制造中具有强大的潜力。

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