首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Continuous monitoring of bisulfide variation in microdialysis effluents by on-line droplet-based microfluidic fluorescent sensor
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Continuous monitoring of bisulfide variation in microdialysis effluents by on-line droplet-based microfluidic fluorescent sensor

机译:基于在线液滴的微流荧光传感器连续监测微透析废水中二硫化物的变化

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We demonstrate a novel fluorescent sensor for real-time and continuous monitoring of the variation of bisulfide in microdialysis effluents by using a nanoparticle-glutathione-fluorescein isothiocyanate (AuNP-GSH-FITC) probe coupled with on-line droplet-based microfluidic chip. The AuNP-GSH-FITC fluorescent probe was firstly developed and used for bisulfide detection in bulk solution by quantitative real-time PCR, which achieved a linear working range from 0.1 μM to 5.0 μM and a limit of detection of ~50 nM. The response time was less than 2 min. With the aid of co-immobilized thiol-polyethylene glycol, the probe exhibited excellent stability and reproducibility in high salinity solutions, including artificial cerebrospinal fluids (aCSF). By adding 0.1% glyoxal to the probe solution, the assay allowed quantification of bisulfide in the presence of cysteine at the micro-molarity level. Using the AuNP-GSH-FITC probe, a droplet-based microfluidic fluorescent sensor was further constructed for online monitoring of bisulfide variation in the effluent of microdialysis. By using fluorescence microscope-charge-coupled device camera as the detector, the integrated microdialysis/microfluidic chip device achieved a detection limit of 2.0 μM and a linear response from 5.0 μM to 50 μM for bisulfide in the tested sample. The method was successfully applied for the on-line measurement of bisulfide variation in aCSF and serum samples. It will be a very useful tool for tracking the variation of bisulfide or hydrogen sulfide in extracellular fluids.
机译:我们展示了一种新型的荧光传感器,用于通过使用纳米颗粒-谷胱甘肽-异硫氰酸荧光素(AuNP-GSH-FITC)探针与基于在线液滴的微流控芯片相结合,实时,连续地监测微透析废水中二硫化物的变化。首先开发了AuNP-GSH-FITC荧光探针,并通过定量实时PCR将其用于大体积溶液中的硫化氢检测,其线性工作范围为0.1μM至5.0μM,检测极限为〜50 nM。响应时间少于2分钟。借助共固定的硫醇-聚乙二醇,该探针在高盐度溶液(包括人工脑脊髓液(aCSF))中表现出出色的稳定性和可重复性。通过向探针溶液中添加0.1%的乙二醛,该测定可以在微摩尔浓度的半胱氨酸存在下对二硫化氢进行定量。使用AuNP-GSH-FITC探针,进一步构建了基于液滴的微流荧光传感器,用于在线监测微透析流出物中的二硫化物变化。通过使用荧光显微镜-电荷耦合器件照相机作为检测器,集成的微透析/微流控芯片设备实现了检测样品中二硫化物的检测极限为2.0μM,线性响应为5.0μM至50μM。该方法已成功用于在线检测aCSF和血清样品中的二硫化物变异。这对于跟踪细胞外液中二硫化物或硫化氢的变化将是非常有用的工具。

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