一种微流控生物芯片,用于在护理点进行全血细胞计数。

U. Hassan, B. Reddy, G. Damhorst, O. Sonoiki, T. Ghonge, C. Yang, R. Bashir
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引用次数: 36

摘要

全血细胞计数(CBCs)是医院最常用和最具信息性的血液检查之一。CBC的结果通常包括白细胞(WBC)计数与差异,红细胞(RBC)计数,血小板计数和血红蛋白测量,可以对数百种疾病的诊断和筛选和治疗产生影响。目前,笨重且昂贵的血液学分析仪被用作获取全血细胞计数的金标准。目前,几乎所有进行全血细胞计数的患者都必须前往拥有大型实验室的医院或集中实验室检测设施。人们迫切需要一种自动化的便携式即时血液计数器,这种计数器可以在几分钟内从一滴血中得出结果,而无需任何训练有素的专业人员操作仪器。我们已经开发出了微流控生物芯片只需一滴全血就能检测出部分全血细胞计数。在片上裂解红细胞,用微加工铂电极电计数后,从10 μL血液中获得白细胞总数及其3部分差异计数。对于红细胞和血小板,用片上PBS稀释1 μL全血,电计数。测量总时间不超过20分钟。我们证明了与商业血液学分析仪获得的结果相比,血细胞计数具有很高的相关性。这项技术可能在医院、私人诊所、零售诊所和发展中国家有巨大的应用前景。
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A microfluidic biochip for complete blood cell counts at the point-of-care.
Complete blood cell counts (CBCs) are one of the most commonly ordered and informative blood tests in hospitals. The results from a CBC, which typically include white blood cell (WBC) counts with differentials, red blood cell (RBC) counts, platelet counts and hemoglobin measurements, can have implications for the diagnosis and screening of hundreds of diseases and treatments. Bulky and expensive hematology analyzers are currently used as a gold standard for acquiring CBCs. For nearly all CBCs performed today, the patient must travel to either a hospital with a large laboratory or to a centralized lab testing facility. There is a tremendous need for an automated, portable point-of-care blood cell counter that could yield results in a matter of minutes from a drop of blood without any trained professionals to operate the instrument. We have developed microfluidic biochips capable of a partial CBC using only a drop of whole blood. Total leukocyte and their 3-part differential count are obtained from 10 μL of blood after on-chip lysing of the RBCs and counting of the leukocytes electrically using microfabricated platinum electrodes. For RBCs and platelets, 1 μL of whole blood is diluted with PBS on-chip and the cells are counted electrically. The total time for measurement is under 20 minutes. We demonstrate a high correlation of blood cell counts compared to results acquired with a commercial hematology analyzer. This technology could potentially have tremendous applications in hospitals at the bedside, private clinics, retail clinics and the developing world.
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