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首页> 外文期刊>Journal of nanomaterials >FRET-Based Detection of Enzymatic Reaction of Botulinum on Microfluidic Device
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FRET-Based Detection of Enzymatic Reaction of Botulinum on Microfluidic Device

机译:基于FRET的肉毒杆菌酶在微流控装置上的酶反应检测

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A microfluidic device was implemented to detect the enzymatic reaction of botulinum toxin A (BTA) using Förster resonance energy transfer (FRET). The microfluidic device comprised a main channel having two loading zones, a reaction chamber and a side channel perpendicular to the main channel. The reaction chamber defined by weir in the main channel was packed with microbeads. The movement of the peptide substrate and the BTA in the microfluidic device was controlled by electrophoresis, and the enzymatic reaction of the BTA was detected through the changes of the fluorescence intensity in the reaction chamber. As a result, it was observed that the enzymatic reaction was affected by the electric voltage applied for the movement of the BTA and the peptide and improved by packing the microbeads in the reaction chamber. The microfluidic device provides the tool to investigate the proteolysis of the substrate by the BTA.
机译:使用Förster共振能量转移(FRET)实现了一种微流体装置来检测肉毒毒素A(BTA)的酶促反应。该微流体装置包括具有两个装载区的主通道,反应室和垂直于该主通道的侧通道。在主通道中由堰限定的反应室中充满了微珠。通过电泳控制肽底物和BTA在微流体装置中的移动,并通过反应室中荧光强度的变化检测BTA的酶促反应。结果,观察到酶促反应受到施加于BTA和肽运动的电压的影响,并且通过将微珠堆积在反应室中而得到改善。微流体装置提供了研究BTA对底物的蛋白水解的工具。

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