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Recent advancements in microfluidics that integrate electrical sensors for whole blood analysis

机译:微流体的最新进展,为全血分析整合电动传感器

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Whole blood analysis reveals crucial information about various physiological and pathological conditions, including cancer metastasis, infection, and immune status, among others. Despite this rich information, the complex composition of whole blood usually required multiple sample preparation steps to purify targeted analytes. Traditionally, whole blood preparation processes, including centrifugation, lysis, dilution, or staining, are usually manually operated by well-trained technicians using bench-top instruments. This preparation can require a large blood volume and cannot be directly integrated with detection systems. Recently, various studies have integrated microfluidics with electrical sensors for whole blood analysis, with a focus on cell-based analysis, such as cell type, number, morphology, phenotype, and secreted molecules. These miniaturized systems require less sample and shorter reaction times. Besides, the sample processing and analysis can be fully integrated and automated with minimal operations. We believe these systems can transfer the current whole blood analysis from hospitals or laboratories into clinics or home settings to enable real-time and continuous health condition monitoring in point-of-care settings.
机译:全血分析揭示了关于各种生理和病理条件的重要信息,包括癌症转移,感染和免疫地位等。尽管具有丰富的信息,但全血的复杂组成通常需要多种样品制备步骤来纯化靶向分析物。传统上,全血液制备方法,包括离心,裂解,稀释或染色,通常通过训练有素的技术人员手动使用台式仪器手动操作。该制剂可能需要大血容量,不能直接与检测系统集成。最近,各种研究具有集成的微流体,具有用于全血液分析的电动传感器,重点是基于细胞的分析,例如细胞类型,数量,形态,表型和分泌分子。这些小型化系统需要更少的样品和更短的反应时间。此外,采样处理和分析可以完全集成和自动化,具有最小的操作。我们认为这些系统可以将目前的全血分析从医院或实验室转移到诊所或家庭环境中,以便在护理点设置中进行实时和持续的健康状况监测。

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