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基于激光微阵列扫描仪的高通量单细胞分析芯片。

High-content single-cell analysis on-chip using a laser microarray scanner.

机构信息

Department of Anesthesiology, Yale School of Medicine, New Haven, CT 06520, USA.

出版信息

Lab Chip. 2012 Dec 7;12(23):5025-33. doi: 10.1039/c2lc40309a.

Abstract

High-content cellomic analysis is a powerful tool for rapid screening of cellular responses to extracellular cues and examination of intracellular signal transduction pathways at the single-cell level. In conjunction with microfluidics technology that provides unique advantages in sample processing and precise control of fluid delivery, it holds great potential to transform lab-on-a-chip systems for high-throughput cellular analysis. However, high-content imaging instruments are expensive, sophisticated, and not readily accessible. Herein, we report on a laser scanning cytometry approach that exploits a bench-top microarray scanner as an end-point reader to perform rapid and automated fluorescence imaging of cells cultured on a chip. Using high-content imaging analysis algorithms, we demonstrated multiplexed measurements of morphometric and proteomic parameters from all single cells. Our approach shows the improvement of both sensitivity and dynamic range by two orders of magnitude as compared to conventional epifluorescence microscopy. We applied this technology to high-throughput analysis of mesenchymal stem cells on an extracellular matrix protein array and characterization of heterotypic cell populations. This work demonstrates the feasibility of a laser microarray scanner for high-content cellomic analysis and opens up new opportunities to conduct informative cellular analysis and cell-based screening in the lab-on-a-chip systems.

摘要

高内涵细胞分析是一种强大的工具,可用于快速筛选细胞对外界刺激的反应,并在单细胞水平上研究细胞内信号转导途径。与微流控技术相结合,微流控技术在样品处理和精确控制流体输送方面具有独特的优势,它有潜力改变用于高通量细胞分析的微流控芯片系统。然而,高内涵成像仪器昂贵、复杂,不容易获得。本文报道了一种激光扫描细胞术方法,该方法利用台式微阵列扫描仪作为终点读取器,对芯片上培养的细胞进行快速自动荧光成像。使用高内涵成像分析算法,我们从所有单个细胞中演示了形态计量和蛋白质组学参数的多重测量。与传统的明场荧光显微镜相比,我们的方法将灵敏度和动态范围提高了两个数量级。我们将该技术应用于细胞外基质蛋白阵列上间充质干细胞的高通量分析和异质细胞群体的表征。这项工作证明了激光微阵列扫描仪用于高内涵细胞分析的可行性,并为在微流控芯片系统中进行信息丰富的细胞分析和基于细胞的筛选开辟了新的机会。

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