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用黑色素瘤抗原A(Melan-A)肽进行疫苗接种可选择出具有增强的功能亲和力和肿瘤反应性的寡克隆T细胞群体。

Vaccination with a Melan-A peptide selects an oligoclonal T cell population with increased functional avidity and tumor reactivity.

作者信息

Valmori Danila, Dutoit Valerie, Schnuriger Valerie, Quiquerez Anne-Lise, Pittet Mikaël J, Guillaume Philippe, Rubio-Godoy Verena, Walker Paul R, Rimoldi Donata, Liénard Danielle, Cerottini Jean-Charles, Romero Pedro, Dietrich Pierre-Yves

机构信息

Division of Clinical Onco-Immunology, Ludwig Institute for Cancer Research, and Multidisciplinary Oncology Center, University Hospital, Lausanne, Switzerland.

出版信息

J Immunol. 2002 Apr 15;168(8):4231-40. doi: 10.4049/jimmunol.168.8.4231.

Abstract

Both the underlying molecular mechanisms and the kinetics of TCR repertoire selection following vaccination against tumor Ags in humans have remained largely unexplored. To gain insight into these questions, we performed a functional and structural longitudinal analysis of the TCR of circulating CD8(+) T cells specific for the HLA-A2-restricted immunodominant epitope from the melanocyte differentiation Ag Melan-A in a melanoma patient who developed a vigorous and sustained Ag-specific T cell response following vaccination with the corresponding synthetic peptide. We observed an increase in functional avidity of Ag recognition and in tumor reactivity in the postimmune Melan-A-specific populations as compared with the preimmune blood sample. Improved Ag recognition correlated with an increase in the t(1/2) of peptide/MHC interaction with the TCR as assessed by kinetic analysis of A2/Melan-A peptide multimer staining decay. Ex vivo analysis of the clonal composition of Melan-A-specific CD8(+) T cells at different time points during vaccination revealed that the response was the result of asynchronous expansion of several distinct T cell clones. Some of these T cell clones were also identified at a metastatic tumor site. Collectively, these data show that tumor peptide-driven immune stimulation leads to the selection of high-avidity T cell clones of increased tumor reactivity that independently evolve within oligoclonal populations.

摘要

在人类中,针对肿瘤抗原进行疫苗接种后,TCR库选择的潜在分子机制和动力学在很大程度上仍未得到探索。为了深入了解这些问题,我们对一名黑色素瘤患者循环CD8(+) T细胞的TCR进行了功能和结构的纵向分析,这些T细胞对来自黑色素细胞分化抗原Melan-A的HLA-A2限制性免疫显性表位具有特异性,该患者在接种相应合成肽后产生了强烈且持续的抗原特异性T细胞反应。与免疫前血样相比,我们观察到免疫后Melan-A特异性群体中抗原识别的功能亲和力和肿瘤反应性有所增加。通过对A2/Melan-A肽多聚体染色衰变的动力学分析评估,改善的抗原识别与肽/MHC与TCR相互作用的t(1/2)增加相关。在接种疫苗期间不同时间点对Melan-A特异性CD8(+) T细胞的克隆组成进行体外分析表明,该反应是几个不同T细胞克隆异步扩增的结果。其中一些T细胞克隆也在转移瘤部位被鉴定出来。总体而言,这些数据表明肿瘤肽驱动的免疫刺激导致选择了具有更高肿瘤反应性的高亲和力T细胞克隆,这些克隆在寡克隆群体中独立进化。

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