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MICROFLUIDIC PRECONDITIONING OF (BIO) FLUIDS FOR REAGENT-FREE INFRARED CLINICAL ANALYSIS AND DIAGNOSTICS

机译:(BIO)液的微流控预处理,用于无试剂红外临床分析和诊断

摘要

A number of reagent-free infrared spectroscopic diagnostic and analytical methods have been established previously, making use of dry biofluid films. For example, this approach has successfully measured high concentration analytes of serum and urine. However, a number of low concentration diagnostically relevant analytes presently elude detection by infrared spectroscopy. 'This is due in part to their relatively low concentration and in part to spectral interference by other strongly absorbing constituents. The applicability of the technique would be broadened substantially if it were possible to separate and concentrate, lower concentration analytes, e.g. serum creatinine and urine proteins, from the obscuring presence of relatively high concentration compounds. The invention disclosed achieves this is through microfluidic sample preconditioning based upon laminar fluid diffusion interfaces. Preferential separation of certain low concentration serum and urine analytes of clinical interest that presently lie just below the threshold of detection by infrared spectroscopy is provided.
机译:以前已经建立了许多无试剂的红外光谱诊断和分析方法,利用了干生物流体膜。例如,该方法已成功测量了血清和尿液的高浓度分析物。但是,目前许多低浓度的诊断相关分析物无法通过红外光谱法进行检测。 ``这部分归因于它们相对较低的浓度,部分归因于其他强吸收成分的光谱干扰。如果有可能分离和浓缩低浓度的分析物,例如低浓度的分析物,则该技术的适用范围将大大扩大。血清肌酐和尿蛋白,来自相对高浓度化合物的隐蔽存在。所公开的本发明是通过基于层流扩散界面的微流体样品预处理来实现的。提供了优先分离的某些低浓度血清和尿液分析物(目前仅在红外光谱检测的阈值之下),这些低浓度血清和尿液具有临床意义。

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