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首页> 外文期刊>Journal of Micromechanics and Microengineering >Design of protein-responsive micro-sized hydrogels for self-regulating microfluidic systems
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Design of protein-responsive micro-sized hydrogels for self-regulating microfluidic systems

机译:用于自调节微流体系统蛋白质响应微型水凝胶的设计

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Diagnosis sensors using micro-total analysis systems (mu-TAS) have been developed for detecting target biomolecules such as proteins and saccharides because they are signal biomolecules for monitoring body conditions and diseases. In this study, biomolecularly stimuli-responsive micro-sized hydrogels that exhibited quick shrinkage in response to lectin concanavalinA (ConA) were prepared in a microchannel by photopolymerization using a fluorescence microscope. In preparing the micro-size hydrogels, glycosyloxyethyl methacrylate (GEMA) as a ligand monomer was copolymerized with a crosslinker in the presence of template ConA in molecular imprinting. The ConA-imprinted micro-hydrogel showed greater shrinkage in response to target ConA than nonimprinted micro-hydrogel. When a buffer solution was switched to an aqueous ConA solution in the Y-shaped microchannel, the flow rates changed quickly because of the responsive shrinkage of the micro-hydrogel prepared in the microchannel. These results suggest that the ConA-imprinted micro-hydrogel acted as a self-regulated microvalve in microfluidic systems.
机译:已经开发了使用微综合分析系统(MU-TAS)的诊断传感器用于检测靶生物分子,例如蛋白质和糖类,因为它们是用于监测身体状况和疾病的信号生物分子。在该研究中,通过使用荧光显微镜光聚合,在微通道中制备响应于凝集素康昔腭伴凝集素(Cona)的生物分子刺激的微尺寸水凝胶。在制备微尺寸水凝胶中,将甲基丙烯酸甲酯(Gema)作为配体单体共聚,在分子印迹的模板Cona存在下与交联剂共聚。 Cona印记的微水凝胶响应于目标Cona而不是非视网膜的微水凝胶显示出更大的收缩。当缓冲溶液切换到Y形微通道中的含水Cona溶液时,由于在微通道中制备的微水凝胶的响应收缩,流速快速变化。这些结果表明,Cona印记的微水凝胶作用为微流体系统中的自调节微量载体。

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