首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Autonomous T cell trafficking examined in vivo with intravital two-photon microscopy.
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Autonomous T cell trafficking examined in vivo with intravital two-photon microscopy.

机译:活体T细胞运输用活体双光子显微镜检查。

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The recirculation of T cells between the blood and secondary lymphoid organs requires that T cells are motile and sensitive to tissue-specific signals. T cell motility has been studied in vitro, but the migratory behavior of individual T cells in vivo has remained enigmatic. Here, using intravital two-photon laser microscopy, we imaged the locomotion and trafficking of naive CD4(+) T cells in the inguinal lymph nodes of anesthetized mice. Intravital recordings deep within the lymph node showed T cells flowing rapidly in the microvasculature and captured individual homing events. Within the diffuse cortex, T cells displayed robust motility with an average velocity of approximately 11 microm x min(-1). T cells cycled between states of low and high motility roughly every 2 min, achieving peak velocities >25 microm x min(-1). An analysis of T cell migration in 3D space revealed a default trafficking program analogous to a random walk. Our results show that naive T cells do not migrate collectively, as theymight under the direction of pervasive chemokine gradients. Instead, they appear to migrate as autonomous agents, each cell taking an independent trafficking path. Our results call into question the role of chemokine gradients for basal T cell trafficking within T cell areas and suggest that antigen detection may result from a stochastic process through which a random walk facilitates contact with antigen-presenting dendritic cells.
机译:T细胞在血液和次要淋巴器官之间的再循环要求T细胞具有运动能力并且对组织特异性信号敏感。已经在体外研究了T细胞的运动性,但是单个T细胞在体内的迁移行为仍然是令人困惑的。在这里,使用活体双光子激光显微镜,我们成像麻醉小鼠腹股沟淋巴结中的幼稚CD4(+)T细胞的运动和运输。淋巴结深处的玻璃体内记录显示T细胞在微脉管系统中快速流动并捕获了单个归巢事件。在弥漫性皮层内,T细胞表现出强劲的运动能力,平均速度约为11 microm x min(-1)。 T细胞大约每2分钟在低运动状态和高运动状态之间循环一次,从而达到峰值速度> 25 microm x min(-1)。对3D空间中T细胞迁移的分析揭示了类似于随机行走的默认运输程序。我们的结果表明,天真T细胞不会集体迁移,因为它们在普遍的趋化因子梯度的方向上是相反的。取而代之的是,它们似乎以自治代理的身份迁移,每个单元都采取独立的贩运路径。我们的结果令人质疑趋化因子梯度在T细胞区域内基础T细胞运输中的作用,并暗示抗原检测可能是随机过程导致的,随机游走通过随机过程促进了与抗原呈递树突状细胞的接触。

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