Department of Biomedical Engineering, Kyung Hee University, 1732 Deogyeong-daero, Giheung-gu, Yongin-si, Gyeonggi-do 17104, Korea.
Sensors (Basel). 2018 Apr 7;18(4):1124. doi: 10.3390/s18041124.
Counting blood cells in cerebrospinal fluid (CSF) is indispensable for diagnosing several pathological conditions in the central nervous system, such as meningitis, even though collecting CSF samples is invasive. Cell counting methods, such as hemocytometer chambers and flow cytometers, have been used for CSF cell counting, but they often lack the sensitivity to detect low blood cell numbers. They also depend on off-chip, manual sample preparation or require bulky, costly equipment, thereby limiting their clinical utility. Here, we present a portable cell counting platform for simple, rapid CSF cell counting that integrates a microfluidic cell counting chamber with a miniaturized microscope. The microfluidic chamber is designed not only to be a reagent container for on-chip cell staining but also to have a large control volume for accurate cell counting. The proposed microscope miniaturizes both bright-field and fluorescence microscopy with a simple optical setup and a custom cell-counting program, thereby allowing rapid and automated cell counting of nucleated white blood cells and non-nucleated red blood cells in fluorescence and bright-field images. Using these unique features, we successfully demonstrate the ability of our counting platform to measure low CSF cell counts without sample preparation.
对脑脊液(CSF)中的血细胞进行计数,对于诊断中枢神经系统的几种病理状况(如脑膜炎)是必不可少的,尽管采集 CSF 样本具有侵入性。血球计数器室和流式细胞仪等细胞计数方法已被用于 CSF 细胞计数,但它们通常缺乏检测低血细胞数量的灵敏度。它们还依赖于片外的手动样本制备,或者需要庞大、昂贵的设备,从而限制了它们的临床应用。在这里,我们提出了一种用于简单、快速 CSF 细胞计数的便携式细胞计数平台,该平台将微流控细胞计数室与微型显微镜集成在一起。微流控室的设计不仅可以作为芯片上细胞染色的试剂容器,还可以具有较大的控制体积,从而实现精确的细胞计数。所提出的显微镜通过简单的光学设置和定制的细胞计数程序对明场和荧光显微镜进行了微型化,从而可以快速自动地对荧光和明场图像中的有核白细胞和无核红细胞进行细胞计数。利用这些独特的功能,我们成功地证明了我们的计数平台无需样品制备即可测量低 CSF 细胞计数的能力。