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Separation of blood microsamples by exploiting sedimentation at the microscale

机译:利用微量沉淀法分离血液微量样品

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摘要

Microsample analysis is highly beneficial in blood-based testing where cutting-edge bioanalytical technologies enable the analysis of volumes down to a few tens of microliters. Despite the availability of analytical methods, the difficulty in obtaining high-quality and standardized microsamples at the point of collection remains a major limitation of the process. Here, we detail and model a blood separation principle which exploits discrete viscosity differences caused by blood particle sedimentation in a laminar flow. Based on this phenomenon, we developed a portable capillary-driven microfluidic device that separates blood microsamples collected from finger-pricks and delivers 2 µL of metered serum for bench-top analysis. Flow cytometric analysis demonstrated the high purity of generated microsamples. Proteomic and metabolomic analyses of the microsamples of 283 proteins and 1351 metabolite features was consistent with samples generated via a conventional centrifugation method. These results were confirmed by a clinical study scrutinising 8 blood markers in obese patients.
机译:微量样品分析在基于血液的检测中非常有用,在这种检测中,最先进的生物分析技术可将体积降至几十微升。尽管可以使用分析方法,但在采集时难以获得高质量和标准化的微量样品仍然是该过程的主要限制。在这里,我们详细介绍并建模了一种血液分离原理,该原理利用了层流中血液颗粒沉降引起的离散粘度差异。基于这种现象,我们开发了一种便携式毛细管驱动微流控设备,该设备可分离从指头收集的血液微量样品,并提供2 µL的定量血清用于台式分析。流式细胞仪分析表明生成的微量样品具有高纯度。对283种蛋白质和1351种代谢物特征的微量样品进行的蛋白质组学和代谢组学分析与常规离心方法产生的样品一致。通过仔细研究肥胖患者中8种血液标志物的临床研究证实了这些结果。

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