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对淋巴结中树突状细胞激活CD4⁺ T细胞的单细胞动力学进行成像。

Imaging the single cell dynamics of CD4+ T cell activation by dendritic cells in lymph nodes.

作者信息

Miller Mark J, Safrina Olga, Parker Ian, Cahalan Michael D

机构信息

Department of Physiology and Biophysics, University of California, Irvine, CA 92697, USA.

出版信息

J Exp Med. 2004 Oct 4;200(7):847-56. doi: 10.1084/jem.20041236.

Abstract

The adaptive immune response is initiated in secondary lymphoid organs by contact between antigen-bearing dendritic cells (DCs) and antigen-specific CD4+ T cells. However, there is scant information regarding the single cell dynamics of this process in vivo. Using two-photon microscopy, we imaged the real-time behavior of naive CD4+ T cells and in vivo-labeled DCs in lymph nodes during a robust T cell response. In the first 2 h after entry into lymph nodes, T cells made short-lived contacts with antigen-bearing DCs, each contact lasting an average of 11-12 min and occurring mainly on dendrites. Altered patterns of T cell motility during this early stage of antigen recognition promoted serial engagement with several adjacent DCs. Subsequently, T cell behavior progressed through additional distinct stages, including long-lived clusters, dynamic swarms, and finally autonomous migration punctuated by cell division. These observations suggest that the immunological synapse in native tissues is remarkably fluid, and that stable synapses form only at specific stages of antigen presentation to T cells. Furthermore, the serial nature of these interactions implies that T cells activate by way of multiple antigen recognition events.

摘要

适应性免疫反应由携带抗原的树突状细胞(DCs)与抗原特异性CD4 + T细胞在二级淋巴器官中接触引发。然而,关于该过程在体内的单细胞动态的信息却很少。我们利用双光子显微镜,在强烈的T细胞反应过程中,对淋巴结中初始CD4 + T细胞和体内标记的DCs的实时行为进行了成像。进入淋巴结后的最初2小时内,T细胞与携带抗原的DCs进行短暂接触,每次接触平均持续11 - 12分钟,主要发生在树突上。在抗原识别的早期阶段,T细胞运动模式的改变促进了与几个相邻DCs的连续接触。随后,T细胞行为经历了其他不同阶段,包括长期聚集、动态群集,最终是由细胞分裂打断的自主迁移。这些观察结果表明,天然组织中的免疫突触非常灵活,只有在抗原呈递给T细胞的特定阶段才会形成稳定的突触。此外,这些相互作用的连续性意味着T细胞通过多个抗原识别事件来激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0771/2213293/55724b6696a9/20041236f1.jpg

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