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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Identification of Antigen-specific B Cells by Concurrent Monitoring of Intracellular Ca2+ Mobilization and Antigen Binding with Microwell Array Chip System Equipped with a CCD Imager
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Identification of Antigen-specific B Cells by Concurrent Monitoring of Intracellular Ca2+ Mobilization and Antigen Binding with Microwell Array Chip System Equipped with a CCD Imager

机译:通过配备CCD成像仪的微孔阵列芯片系统同时监测细胞内Ca2 +动员和抗原结合来鉴定抗原特异性B细胞

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B cells are very heterogeneous, consisting of more than 10(9) B-cell clones with distinct specificities for antigens in each individual. To identify single B cells with antigen specificity, we have been developing cell microarray technology using microwell array chips whose microwells each capture a single B cell. Using microwell array chips, we detected antigen-specific B cells by monitoring antigen-induced intracellular Ca2+ mobilization with a CCD scanner (MAC-CCD system) or the binding Of fluorescence-labeled antigen to cells with a confocal laser scanner. We retrieved target cells from the chip, cloned immunoglobulin genes, and produced antigen-specific antibodies. However, these methods present some difficulties: the former technique could not detect cells whose frequency was less than 0.05% and the latter one took a long time to identify the objective cells although it Could detect cells at a frequency of 0.01%. Here, we have combined the advantages of these two methods. Monitoring antigen-incluced intracellular Ca2+ mobilizations and the binding Of fluorescence-labeled antigens simultaneously with a MAC-CCD system enabled us to detect rapidly, antigen-specific B cells whose frequency was less than 0.01% with high efficiency. Our system provides a superior screening system for antigen-specific B cells and extends the horizons of multiparameter single-cell analysis in heterogeneous cell populations.
机译:B细胞非常异质,由超过10(9)个B细胞克隆组成,每个克隆对抗原具有不同的特异性。为了鉴定具有抗原特异性的单个B细胞,我们一直在开发使用微孔阵列芯片的细胞微阵列技术,其微孔各自捕获单个B细胞。使用微孔阵列芯片,我们通过用CCD扫描仪(MAC-CCD系统)监测抗原诱导的细胞内Ca2 +动员或使用共聚焦激光扫描仪将荧光标记的抗原与细胞结合来检测抗原特异性B细胞。我们从芯片中检索了靶细胞,克隆了免疫球蛋白基因,并产生了抗原特异性抗体。但是,这些方法存在一些困难:前一种技术无法检测频率小于0.05%的细胞,而后一种技术虽然可以检测频率为0.01%的细胞,但仍需要很长时间才能鉴定出目标细胞。在这里,我们结合了这两种方法的优点。通过MAC-CCD系统同时监测抗原不吞噬的细胞内Ca2 +动员和荧光标记抗原的结合,使我们能够快速,高效地检测频率低于0.01%的抗原特异性B细胞。我们的系统为抗原特异性B细胞提供了卓越的筛选系统,并扩展了异质细胞群体中多参数单细胞分析的视野。

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