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在流式细胞术检测中,对MIP-1β进行细胞内检测可增强检测IFN-γ介导的HIV-1特异性CD8 T细胞反应的能力,为酶联免疫斑点法提供了一种敏感的替代方法。

The intracellular detection of MIP-1beta enhances the capacity to detect IFN-gamma mediated HIV-1-specific CD8 T-cell responses in a flow cytometric setting providing a sensitive alternative to the ELISPOT.

作者信息

Kutscher Sarah, Dembek Claudia J, Allgayer Simone, Heltai Silvia, Stadlbauer Birgit, Biswas Priscilla, Nozza Silvia, Tambussi Giuseppe, Bogner Johannes R, Stellbrink Hans J, Goebel Frank D, Lusso Paolo, Tinelli Marco, Poli Guido, Erfle Volker, Pohla Heike, Malnati Mauro, Cosma Antonio

机构信息

Institute of Virology, Helmholtz Zentrum München, German Research Center for Environmental Health, 85764 Neuherberg, Germany.

出版信息

AIDS Res Ther. 2008 Oct 6;5:22. doi: 10.1186/1742-6405-5-22.

Abstract

BACKGROUND

T-cell mediated immunity likely plays an important role in controlling HIV-1 infection and progression to AIDS. Several candidate vaccines against HIV-1 aim at stimulating cellular immune responses, either alone or together with the induction of neutralizing antibodies, and assays able to measure CD8 and CD4 T-cell responses need to be implemented. At present, the IFN-gamma-based ELISPOT assay is considered the gold standard and it is broadly preferred as primary assay for detection of antigen-specific T-cell responses in vaccine trials. However, in spite of its high sensitivity, the measurement of the sole IFN-gamma production provides limited information on the quality of the immune response. On the other hand, the introduction of polychromatic flow-cytometry-based assays such as the intracellular cytokine staining (ICS) strongly improved the capacity to detect several markers on a single cell level.

RESULTS

The cumulative analysis of 275 samples from 31 different HIV-1 infected individuals using an ICS staining procedure optimized by our laboratories revealed that, following antigenic stimulation, IFN-gamma producing T-cells were also producing MIP-1beta whereas T-cells characterized by the sole production of IFN-gamma were rare. Since the analysis of the combination of two functions decreases the background and the measurement of the IFN-gamma+ MIP-1beta+ T-cells was equivalent to the measurement of the total IFN-gamma+ T-cells, we adopted the IFN-gamma+ MIP-1beta+ data analysis system to evaluate IFN-gamma-based, antigen-specific T-cell responses. Comparison of our ICS assay with ELISPOT assays performed in two different experienced laboratories demonstrated that the IFN-gamma+ MIP-1beta+ data analysis system increased the sensitivity of the ICS up to levels comparable to the sensitivity of the ELISPOT assay.

CONCLUSION

The IFN-gamma+ MIP-1beta+ data evaluation system provides a clear advantage for the detection of low magnitude HIV-1-specific responses. These results are important to guide the choice for suitable highly sensitive immune assays and to build reagent panels able to accurately characterize the phenotype and function of responding T-cells. More importantly, the ICS assay can be used as primary assay to evaluate HIV-1-specific responses without losing sensitivity in comparison to the ELISPOT assay.

摘要

背景

T细胞介导的免疫在控制HIV-1感染及发展为艾滋病的过程中可能发挥重要作用。几种针对HIV-1的候选疫苗旨在单独或与诱导中和抗体一起刺激细胞免疫反应,因此需要实施能够检测CD8和CD4 T细胞反应的检测方法。目前,基于γ干扰素的ELISPOT检测被视为金标准,在疫苗试验中广泛用作检测抗原特异性T细胞反应的主要检测方法。然而,尽管其灵敏度高,但仅检测γ干扰素的产生所提供的免疫反应质量信息有限。另一方面,基于多色流式细胞术的检测方法如细胞内细胞因子染色(ICS)的引入,极大地提高了在单细胞水平上检测多种标志物的能力。

结果

使用我们实验室优化的ICS染色程序对31名不同HIV-1感染个体的275个样本进行累积分析,结果显示,抗原刺激后,产生γ干扰素的T细胞也产生MIP-1β,而仅产生γ干扰素的T细胞很少见。由于对两种功能组合的分析降低了背景,且对γ干扰素+MIP-1β+T细胞的检测等同于对总γ干扰素+T细胞的检测,因此我们采用γ干扰素+MIP-1β+数据分析系统来评估基于γ干扰素的抗原特异性T细胞反应。将我们的ICS检测与在两个不同经验丰富的实验室进行的ELISPOT检测进行比较,结果表明γ干扰素+MIP-1β+数据分析系统将ICS的灵敏度提高到了与ELISPOT检测灵敏度相当的水平。

结论

γ干扰素+MIP-1β+数据评估系统在检测低强度HIV-1特异性反应方面具有明显优势。这些结果对于指导选择合适的高灵敏度免疫检测方法以及构建能够准确表征反应性T细胞表型和功能的试剂组非常重要。更重要的是,与ELISPOT检测相比,ICS检测可作为评估HIV-1特异性反应的主要检测方法,且不会损失灵敏度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b856/2569082/be9c507ed41d/1742-6405-5-22-1.jpg

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