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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >A Versatile Platform for Comprehensive Chip-Based Explorative Cytometry
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A Versatile Platform for Comprehensive Chip-Based Explorative Cytometry

机译:全面的基于芯片的探索性细胞仪的多功能平台

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摘要

Analysis of the immense complexity of the immune system is increasingly hampered by technical limitations of current methodologies, especially for multiparameter- and functional analysis of samples containing small numbers of cells. We here present a method, which is based on the stepwise functional manipulation and analysis of living immune cells that are self-immobilized within microfluidic chips using automated epi-fluorescence microscopy overcoming current limitations for comprehensive immunophenotyping. Crossvalidation with flow cytometry revealed a 10-fold increased sensitivity and a comparable specificity. By using small sample volumes and cell numbers (2-10 mu l, down to 20,000 cells), we were able to analyze a virtually unlimited number of intracellular and surface markers even on living immune cells. We exemplify the scientific and diagnostic potential of this method by (1) identification and phenotyping of rare cells, (2) comprehensive analysis of very limited sample volume, and (3) deep immunophenotyping of human B-cells after in vitro differentiation. Finally, we propose an informatic model for annotation and comparison of cytometric data by using an ontology-based approach. The chip-based cytometry introduced here turned out to be a very useful tool to enable a stepwise exploration of precious, small cell-containing samples with an virtually unlimited number of surface- and intracellular markers.
机译:当前方法的技术局限性日益阻碍了对免疫系统巨大复杂性的分析,特别是对于包含少量细胞的样品的多参数和功能分析。我们在此提出一种方法,该方法基于逐步的功能操纵和活免疫细胞的分析,这些免疫细胞使用自动落射荧光显微镜技术自固定在微流控芯片中,克服了目前针对全面免疫表型的局限性。流式细胞术的交叉验证显示灵敏度提高了10倍,并且特异性相当。通过使用少量的样品量和细胞数量(2-10μl,低至20,000个细胞),即使在活的免疫细胞上,我们也能够分析几乎无限数量的细胞内和表面标记。我们通过(1)稀有细胞的鉴定和表型分析,(2)非常有限的样品量的综合分析和(3)体外分化后的人B细胞的深层免疫表型,例证了该方法的科学和诊断潜力。最后,我们提出了一种信息模型,用于通过使用基于本体的方法来注释和比较细胞计数数据。事实证明,此处介绍的基于芯片的细胞计数法是非常有用的工具,可用于逐步探索珍贵的,含小细胞的样品,其表面和细胞内标记物的数量实际上不受限制。

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