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Deformability Measurement of Single-Cells at High-Throughput With Imaging Flow Cytometry

机译:成像流式细胞仪在高通量下测量单细胞的可变形性

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摘要

Disease conditions like malaria, sickle cell anemia, diabetes mellitus, cancer, etc., are known to significantly alter the deformability of certain types of cells (red blood cells, white blood cells, circulating tumor cells, etc.). To determine the cellular deformability, techniques like micropipette aspiration, atomic force microscopy, optical tweezers, quantitative phase imaging have been developed. Many of these techniques have an advantage of determining the single cell deformability with ultrahigh precision. However, the suitability of these techniques for the realization of a is questionable as they are expensive and extremely slow to operate on a huge population of cells. In this paper, we propose a technique for high-throughput (800 cells/s) determination of cellular deformability on a single cell basis. This technique involves capturing the image(s) of cells in flow that have undergone deformation under the influence of shear gradient generated by the fluid flowing through the microfluidic channels. Deformability indices of these cells can be computed by performing morphological operations on these images. We demonstrate the applicability of this technique for examining the deformability index on healthy, diabetic, and sphered red blood cells. We believe that this technique has a strong role to play in the realization of a potential tool that uses deformability as one of the important criteria in disease diagnosis.
机译:已知诸如疟疾,镰状细胞贫血,糖尿病,癌症等疾病会显着改变某些类型的细胞(红细胞,白细胞,循环肿瘤细胞等)的可变形性。为了确定细胞的可变形性,已经开发了诸如微量移液器抽吸,原子力显微镜,光学镊子,定量相成像的技术。这些技术中的许多技术具有以超高精度确定单细胞变形能力的优点。然而,这些技术对实现α-α的适应性值得怀疑,因为它们昂贵且在大量细胞上运行极慢。在本文中,我们提出了一种用于在单细胞基础上高通量(800个细胞/秒)确定细胞变形能力的技术。该技术涉及捕获在流动通过微流体通道的流体产生的剪切梯度的影响下已发生变形的流动细胞的图像。这些细胞的变形指数可以通过对这些图像进行形态学运算来计算。我们证明了该技术在检查健康,糖尿病和球形红细胞的变形指数方面的适用性。我们相信,该技术在使用变形性作为疾病诊断的重要标准之一的潜在工具的实现中具有重要作用。

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