首页> 外文会议>Advanced Biomedical and Clinical Diagnostic Systems IV; Progress in Biomedical Optics and Imaging; vol.7 no.3 >Optical enhanced luminescent measurements and sequential reagent mixing on a centrifugal microfluidic device for multi-analyte point-of-care applications
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Optical enhanced luminescent measurements and sequential reagent mixing on a centrifugal microfluidic device for multi-analyte point-of-care applications

机译:光学增强的发光测量和离心微流控设备上的顺序试剂混合,用于多分析物即时护理应用

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A centrifugal-based microfluidic device was built with lyophilized bioluminescent reagents for measuring multiple metabolites from a sample of less than 15 μL. Microfluidic channels, reaction wells, and valves were cut in adhesive vinyl film using a knife plotter with features down to 30 μm and transferred to metalized polycarbonate compact disks (CDs). The fabrication method was simple enough to test over 100 prototypes within a few months. It also allowed enzymes to be packaged in microchannels without exposure to heat or chemicals. The valves were rendered hydrophobic using liquid phase deposition. Microchannels were patterned using soft lithography to make them hydrophilic. Reagents and calibration standards were deposited and lyophilized in different wells before being covered with another adhesive film. Sample delivery was controlled by a modified CD ROM. The CD was capable of distributing 200 nL sample aliquots to 36 channels, each with a different set of reagents that mixed with the sample before initiating the luminescent reactions. Reflection of light from the metalized layer and lens configuration allowed for 20% of the available light to be collected from each channel. ATP was detected down to 0.1 μM. Creatinine, glucose, and galactose were also measured in micro and milliMolar ranges. Other optical-based analytical assays can easily be incorporated into the device design. The minimal sample size needed and expandability of the device make it easier to simultaneously measure a variety of clinically relevant analytes in point-of-care settings.
机译:用冻干的生物发光试剂构建了基于离心的微流控设备,用于测量小于15μL样品中的多种代谢产物。使用功能低至30μm的刀式绘图仪,在乙烯基胶膜上切割微流体通道,反应孔和阀门,并将其转移到金属化的聚碳酸酯光盘(CD)上。制造方法非常简单,可以在几个月内测试100多个原型。它还允许将酶包装在微通道中而不暴露于热或化学物质。使用液相沉积使阀疏水。使用软光刻对微通道进行图案化以使其具有亲水性。试剂和校准标准液先被沉积在不同的孔中并冻干,然后再覆盖上另一层胶膜。样品的输送由修改后的CD ROM控制。 CD能够将200 nL样品等分试样分配到36个通道,每个通道都有一组不同的试剂,这些试剂会在启动发光反应之前与样品混合。来自金属化层的光反射和透镜配置允许从每个通道收集20%的可用光。 ATP低至0.1μM。肌酐,葡萄糖和半乳糖的含量也在微摩尔和毫摩尔范围内测量。其他基于光学的分析测定可以轻松地整合到设备设计中。所需的最小样本量和设备的可扩展性使在即时医疗点环境中同时测量多种临床相关分析物变得更加容易。

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