Schonbrun Ethan, Malka Roy, Di Caprio Giuseppe, Schaak Diane, Higgins John M
Rowland Institute at Harvard, Harvard University, Cambridge, Massachusetts.
Cytometry A. 2014 Apr;85(4):332-8. doi: 10.1002/cyto.a.22450. Epub 2014 Feb 12.
We present an optical system, called the quantitative absorption cytometer (QAC), to measure the volume and hemoglobin mass of red blood cells flowing through a microfluidic channel. In contrast to clinical hematology analyzers, where cells are sphered in order for both volume and hemoglobin to be measured accurately, the QAC measures cells in their normal physiological shape. Human red blood cells are suspended in a refractive index-matching absorbing buffer, driven through a microfluidic channel, and imaged using a transmission light microscope onto a color camera. A red and a blue LED illuminate cells and images at each color are used to independently retrieve cell volume and hemoglobin mass. This system shows good agreement with red blood cell indices retrieved by a clinical hematology analyzer and in fact measures a smaller coefficient of variation of hemoglobin concentration. In addition to cell indices, the QAC returns height and mass maps of each measured cell. These quantitative images are valuable for analyzing the detailed morphology of individual cells as well as statistical outliers found in the data. We also measured red blood cells in hypertonic and hypotonic buffers to quantify the correlation between volume and hemoglobin mass under osmotic stress. Because this method is invariant to cell shape, even extremely nonspherical cells in hypertonic buffers can be measured accurately.
我们展示了一种称为定量吸收细胞仪(QAC)的光学系统,用于测量流经微流控通道的红细胞的体积和血红蛋白质量。与临床血液学分析仪不同,在临床血液学分析仪中,细胞需被处理成球形以便准确测量体积和血红蛋白,而QAC可对处于正常生理形状的细胞进行测量。将人类红细胞悬浮于与折射率匹配的吸收性缓冲液中,驱动其通过微流控通道,并使用透射光显微镜成像到彩色相机上。一个红色发光二极管(LED)和一个蓝色LED照亮细胞,每种颜色的图像用于独立获取细胞体积和血红蛋白质量。该系统与临床血液学分析仪获取的红细胞指数显示出良好的一致性,实际上其测量的血红蛋白浓度变异系数更小。除了细胞指数外,QAC还能给出每个测量细胞的高度和质量图。这些定量图像对于分析单个细胞的详细形态以及数据中发现的统计异常值很有价值。我们还在高渗和低渗缓冲液中测量红细胞,以量化渗透压应激下体积与血红蛋白质量之间的相关性。由于该方法对细胞形状不敏感,即使是高渗缓冲液中极其非球形的细胞也能被准确测量。