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静息记忆性CD8 + T细胞在体外对抗原刺激反应过度。

Resting memory CD8+ T cells are hyperreactive to antigenic challenge in vitro.

作者信息

Pihlgren M, Dubois P M, Tomkowiak M, Sjögren T, Marvel J

机构信息

Laboratoire de Biologie Moleculaire et Cellulaire de Ecole Normale Superieure Lyon centre National de la Recherche Scientifique Unité Mixte de Recherche, France.

出版信息

J Exp Med. 1996 Dec 1;184(6):2141-51. doi: 10.1084/jem.184.6.2141.

Abstract

The characteristics of CD8+ T cells responsible for memory responses are still largely unknown. Particularly, it has not been determined whether different activation thresholds distinguish naive from memory CD8+ T cell populations. In most experimental systems, heterogeneous populations of primed CD8+ T cells can be identified in vivo after immunization. These cells differ in terms of cell cycle status, surface phenotype, and/or effector function. This heterogeneity has made it difficult to assess the activation threshold and the relative role of these subpopulations in memory responses. In this study we have used F5 T cell receptor transgenic mice to generate a homogeneous population of primed CD8+ T cells. In the F5 transgenic mice, peptide injection in vivo leads to activation of most peripheral CD8+ T cells. In vivo BrdU labeling has been used to follow primed T cells over time periods spanning several weeks after peptide immunization. Our results show that the majority of primed CD8+ T cells generated in this system are not cycling and express increased levels of CD44 and Ly6C. These cells remain responsive to secondary peptide challenge in vivo as evidenced by short term upregulation of activation markers such as CD69 and CD44. The activation thresholds of naive and primed CD8+ T cells were compared in vitro. We found that CD8+ T cells from primed mice are activated by peptide concentrations 10-50-fold lower than naive mice. In addition, the kinetics of interleukin 2R alpha chain upregulation by primed CD8+ T cells differ from naive CD8+ T cells. These primed hyperresponsive CD8+ T cells might play an important role in the memory response.

摘要

负责记忆反应的CD8 + T细胞的特征在很大程度上仍然未知。特别是,尚未确定不同的激活阈值是否区分初始CD8 + T细胞群体和记忆CD8 + T细胞群体。在大多数实验系统中,免疫后可在体内鉴定出异质性的致敏CD8 + T细胞群体。这些细胞在细胞周期状态、表面表型和/或效应器功能方面存在差异。这种异质性使得难以评估这些亚群在记忆反应中的激活阈值和相对作用。在本研究中,我们使用F5 T细胞受体转基因小鼠来产生均一的致敏CD8 + T细胞群体。在F5转基因小鼠中,体内注射肽可导致大多数外周CD8 + T细胞活化。体内BrdU标记已被用于追踪肽免疫后数周内的致敏T细胞。我们的结果表明,在该系统中产生的大多数致敏CD8 + T细胞不处于细胞周期,并且表达增加水平的CD44和Ly6C。这些细胞在体内对二次肽攻击仍有反应,如激活标志物如CD69和CD44的短期上调所证明。在体外比较了初始和致敏CD8 + T细胞的激活阈值。我们发现,来自致敏小鼠的CD8 + T细胞被比初始小鼠低10 - 50倍的肽浓度激活。此外,致敏CD8 + T细胞上调白细胞介素2Rα链的动力学与初始CD8 + T细胞不同。这些致敏的高反应性CD8 + T细胞可能在记忆反应中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c34/2196370/df39489002ad/JEM.pihlgren1.jpg

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