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细胞跟踪速度测量法作为一种经济便携的血液学分析仪的潜力。

Potential of cell tracking velocimetry as an economical and portable hematology analyzer.

机构信息

William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, 151 West Woodruff Avenue, Columbus, OH, 43210, USA.

Department of Pathology, University of Pittsburgh, 3636 Blvd of the Allies, Pittsburgh, PA, 15213, USA.

出版信息

Sci Rep. 2022 Feb 1;12(1):1692. doi: 10.1038/s41598-022-05654-5.

Abstract

Anemia and iron deficiency continue to be the most prevalent nutritional disorders in the world, affecting billions of people in both developed and developing countries. The initial diagnosis of anemia is typically based on several markers, including red blood cell (RBC) count, hematocrit and total hemoglobin. Using modern hematology analyzers, erythrocyte parameters such as mean corpuscular volume (MCV), mean corpuscular hemoglobin (MCH), etc. are also being used. However, most of these commercially available analyzers pose several disadvantages: they are expensive instruments that require significant bench space and are heavy enough to limit their use to a specific lab and lead to a delay in results, making them less practical as a point-of-care instrument that can be used for swift clinical evaluation. Thus, there is a need for a portable and economical hematology analyzer that can be used at the point of need. In this work, we evaluated the performance of a system referred to as the cell tracking velocimetry (CTV) to measure several hematological parameters from fresh human blood obtained from healthy donors and from sickle cell disease subjects. Our system, based on the paramagnetic behavior that deoxyhemoglobin or methemoglobin containing RBCs experience when suspended in water after applying a magnetic field, uses a combination of magnets and microfluidics and has the ability to track the movement of thousands of red cells in a short period of time. This allows us to measure not only traditional RBC indices but also novel parameters that are only available for analyzers that assess erythrocytes on a cell by cell basis. As such, we report, for the first time, the use of our CTV as a hematology analyzer that is able to measure MCV, MCH, mean corpuscular hemoglobin concentration (MCHC), red cell distribution width (RDW), the percentage of hypochromic cells (which is an indicator of insufficient marrow iron supply that reflects recent iron reduction), and the correlation coefficients between these metrics. Our initial results indicate that most of the parameters measured with CTV are within the normal range for healthy adults. Only the parameters related to the red cell volume (primarily MCV and RDW) were outside the normal range. We observed significant discrepancies between the MCV measured by our technology (and also by an automated cell counter) and the manual method that calculates MCV through the hematocrit obtained by packed cell volume, which are attributed to the artifacts of plasma trapping and cell shrinkage. While there may be limitations for measuring MCV, this device offers a novel point of care instrument to provide rapid RBC parameters such as iron stores that are otherwise not rapidly available to the clinician. Thus, our CTV is a promising technology with the potential to be employed as an accurate, economical, portable and fast hematology analyzer after applying instrument-specific reference ranges or correction factors.

摘要

贫血和缺铁仍然是世界上最普遍的营养失调症,影响到发达国家和发展中国家的数十亿人。贫血的初步诊断通常基于几个标志物,包括红细胞(RBC)计数、血细胞比容和总血红蛋白。使用现代血液学分析仪,还可以使用红细胞参数,如平均红细胞体积(MCV)、平均红细胞血红蛋白(MCH)等。然而,大多数这些商业上可用的分析仪存在几个缺点:它们是昂贵的仪器,需要大量的工作台空间,并且足够重,限制了它们在特定实验室的使用,并导致结果延迟,使其作为可用于快速临床评估的即时护理仪器不太实用。因此,需要一种便携式且经济的血液学分析仪,可以在需要的地方使用。在这项工作中,我们评估了一种称为细胞跟踪速度测量(CTV)的系统的性能,该系统可从健康供体和镰状细胞病患者获得的新鲜人血中测量几个血液学参数。我们的系统基于脱氧血红蛋白或高铁血红蛋白在施加磁场后悬浮在水中时所经历的顺磁性行为,使用磁铁和微流控技术的组合,并能够在短时间内跟踪数千个红细胞的运动。这使我们不仅能够测量传统的 RBC 指数,还能够测量仅适用于逐个评估红细胞的分析仪可用的新型参数。因此,我们首次报告使用我们的 CTV 作为血液学分析仪,能够测量 MCV、MCH、平均红细胞血红蛋白浓度(MCHC)、红细胞分布宽度(RDW)、低色素细胞的百分比(这是骨髓铁供应不足的指标,反映了最近的铁减少)以及这些指标之间的相关系数。我们的初步结果表明,CTV 测量的大多数参数都在健康成年人的正常范围内。只有与红细胞体积相关的参数(主要是 MCV 和 RDW)超出了正常范围。我们观察到我们的技术(以及自动细胞计数器)测量的 MCV 与通过红细胞比容计算 MCV 的手动方法之间存在显著差异,这归因于血浆捕获和细胞收缩的伪影。虽然测量 MCV 可能存在限制,但该设备提供了一种新的即时护理仪器,可以快速提供红细胞参数,例如否则无法快速提供给临床医生的铁储存。因此,CTV 是一种有前途的技术,具有作为准确、经济、便携式和快速血液学分析仪的潜力,在应用特定仪器的参考范围或校正因子后。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3ad/8807587/4b47b117a1db/41598_2022_5654_Fig1_HTML.jpg

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