首页> 外文期刊>Journal of Immunological Methods >Combination of MHC-peptide multimer-based T cell sorting with the Immunoscope permits sensitive ex vivo quantitation and follow-up of human CD8+ T cell immune responses.
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Combination of MHC-peptide multimer-based T cell sorting with the Immunoscope permits sensitive ex vivo quantitation and follow-up of human CD8+ T cell immune responses.

机译:基于MHC肽多聚体的T细胞分选与免疫镜相结合,可以进行敏感的离体定量和人类CD8 + T细胞免疫应答的随访。

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摘要

Identification of MHC-restricted antigens and progress in the induction and control of adaptive cytotoxic immune responses have led to renewed interest in immunotherapy as a treatment for severe pathologies such as cancer and autoimmune diseases. Reliable procedures for detecting and monitoring T cell responses induced by the treatment throughout a clinical trial are needed in order to design rational protocols with increased efficiency. We have attempted to develop such a procedure by combining T cell sorting using HLA-peptide complexes multimerized on magnetic beads together with the quantitative Immunoscope approach. Once a recruited patient has been typed for HLA and target antigens, relevant HLA--peptide multimers can be selected and used for sorting specific peripheral T cells prior to any treatment and at the peak of the expected response to treatment. Clonotypic primers specific for the TCR rearrangements of the specific T cell clones can then be designed and used for measuring the frequency of their TCR transcripts by quantitative PCR on blood samples or T cell subsets throughout the trial. In reconstruction experiments as well as in samples from one rheumatoid arthritis patient, we were readily able to detect and follow several T cell clones with a frequency as low as 10(-5) among CD8+ T cells. The main advantages of this procedure over other currently available assays are that it does not require any assumptions on the functional status of the specific T cells and it permits the monitoring of individual T cell clones whose phenotypic shift can thus be evaluated.
机译:MHC限制性抗原的鉴定以及适应性细胞毒性免疫反应的诱导和控制方面的进展,引起了人们对免疫疗法的新兴趣,这种免疫疗法可用于治疗严重的疾病,例如癌症和自身免疫性疾病。为了设计出效率更高的合理方案,需要一种可靠的程序来检测和监控由治疗引起的T细胞反应。我们已经尝试通过结合使用在磁珠上多聚的HLA-肽复合物的T细胞分选和定量免疫镜方法来开发这样的程序。一旦对招募的患者进行了HLA和靶抗原的分型,就可以选择相关的HLA-肽多聚体并将其用于在进行任何治疗之前和预期的治疗反应高峰时对特定的外周血T细胞进行分选。然后可以设计特定T细胞克隆的TCR重排特异性的clonotypic引物,并在整个试验过程中通过对血液样本或T细胞亚群进行定量PCR来测量其TCR转录本的频率。在重建实验以及一名风湿性关节炎患者的样本中,我们能够轻松检测并追踪CD8 + T细胞中频率低至10(-5)的多个T细胞克隆。与其他目前可用的测定方法相比,该方法的主要优点在于,它无需对特定T细胞的功能状态进行任何假设,并且可以监控可评估其表型变化的单个T细胞克隆。

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