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一种基于流式细胞术的灵敏细胞毒性T淋巴细胞检测方法,通过检测靶细胞中裂解的半胱天冬酶3来实现。

A sensitive flow cytometry-based cytotoxic T-lymphocyte assay through detection of cleaved caspase 3 in target cells.

作者信息

He Liwei, Hakimi Jalil, Salha Danielle, Miron Ioana, Dunn Pamela, Radvanyi Laszlo

机构信息

Immunology Platform, Aventis Pasteur Research and Development, Connaught Campus Toronto, Ontario, Canada M2R 3T4.

出版信息

J Immunol Methods. 2005 Sep;304(1-2):43-59. doi: 10.1016/j.jim.2005.06.005.

Abstract

We describe a highly sensitive flow cytometry-based CTL assay using the cleavage of caspase 3 in target cells as a readout. The assay involved labeling of cells with a cell tracker dye and staining permeabilized cells with an antibody recognizing cleaved caspase 3. The assay proved to be robust and reliable in measuring antigen-specific CTL activity in a number of human and murine systems, including MLR, human peptide-specific T-cell responses induced in vitro, and CTL responses following immunization of mice with viral and peptide vaccines. The assay was found to yield comparable results as 51Cr-release, but with markedly higher sensitivity. When compared to detection of antigen-specific T cells via HLA tetramer/pentamer-based methods of T-cell staining in HIV gag peptide-specific human T cell lines the caspase 3 cleavage readout assay exhibited a comparable level of sensitivity with detection of CTL function at antigen-specific T-cell frequencies of 1:15,000 or lower. A similar level of sensitivity was obtained when murine CTL assays were performed with MLR in which effector cells were highly diluted with naïve syngeneic spleen cells. Our results indicate that the caspase 3 cleavage assay may be a powerful tool to measure antigen-specific CTL responses in human vaccine trials and in pre-clinical animal models of CTL function at both high and low effector cell frequencies.

摘要

我们描述了一种基于流式细胞术的高灵敏度CTL检测方法,该方法以靶细胞中caspase 3的切割作为检测指标。该检测方法包括用细胞追踪染料标记细胞,并用识别切割后的caspase 3的抗体对通透处理后的细胞进行染色。在包括混合淋巴细胞反应(MLR)在内的多种人和小鼠系统中,该检测方法在测量抗原特异性CTL活性方面被证明是稳健且可靠的,这些系统还包括体外诱导的人肽特异性T细胞反应,以及用病毒疫苗和肽疫苗免疫小鼠后的CTL反应。结果发现,该检测方法与51Cr释放法产生的结果相当,但灵敏度明显更高。在HIV gag肽特异性人T细胞系中,与通过基于HLA四聚体/五聚体的T细胞染色方法检测抗原特异性T细胞相比,caspase 3切割检测方法在抗原特异性T细胞频率为1:15,000或更低时,在检测CTL功能方面表现出相当的灵敏度水平。在用MLR进行小鼠CTL检测时,用同基因幼稚脾细胞高度稀释效应细胞,也获得了类似的灵敏度水平。我们的结果表明,caspase 3切割检测方法可能是一种强大的工具,可用于在人类疫苗试验以及高、低效应细胞频率下CTL功能的临床前动物模型中测量抗原特异性CTL反应。

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