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Micropatterned Multienzyme Devices with Adjustable Amounts of Immobilized Enzymes

机译:固定量可调的微模式多酶设备

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Multienzyme microstructures of glucose oxidase (GOx) and horseradish peroxidase (HRP) were prepared by layer-by-layer deposition inside microfluidic networks on glass substrates in order to allow both site-specific deposition and control of the amount of immobilized enzymes. The obtained microstructures were characterized by scanning force microscopy for the topography of the deposited layers. The local enzyme activity was characterized by the substrate-generation/tipcollection mode and the enzyme-mediated feedback mode of the scanning electrochemical microscope (SECM). These measurements provided quantitative information about the immobilized enzyme activity as a basis for adjusting enzyme loading for multienzyme structures that realize logical operations based on enzymatic conversions. Information about local HRP activity can also be obtained by optical readout using an Amplex UltraRed fluorgenic substrate and reading with a confocal laser scanning microscope with a much higher repetition rate for image acquisition. Using these principles, a layout with HRP and GOx microstructures was realized that showed the functionality of an OR Boolean logic switch.
机译:葡萄糖氧化酶(GOx)和辣根过氧化物酶(HRP)的多酶微结构是通过在玻璃基板上的微流网络内部逐层沉积来制备的,以便既可以进行位点特异性沉积,又可以控制固定化酶的量。通过扫描力显微镜对沉积层的形貌进行表征。局部酶活性的特征在于底物生成/吸头模式和扫描电化学显微镜(SECM)的酶介导的反馈模式。这些测量提供了有关固定化酶活性的定量信息,作为调节多酶结构的酶负载的基础,该多酶结构实现了基于酶促转化的逻辑操作。关于局部HRP活性的信息也可以通过使用Amplex UltraRed荧光底物进行光学读出并用共焦激光扫描显微镜读取(具有更高的重复率进行图像采集)来获得。使用这些原理,实现了具有HRP和GOx微结构的布局,该布局显示了OR布尔逻辑开关的功能。

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