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时间命运图谱揭示了小鼠天然T淋巴细胞中与年龄相关的异质性。

Temporal fate mapping reveals age-linked heterogeneity in naive T lymphocytes in mice.

作者信息

Hogan Thea, Gossel Graeme, Yates Andrew J, Seddon Benedict

机构信息

Institute of Immunity and Transplantation, Division of Infection and Immunity, University College London, Royal Free Hospital, London NW3 2PF, United Kingdom;

Institute of Infection, Immunity & Inflammation, College of Medical, Veterinary & Life Sciences, University of Glasgow, Glasgow G12 8TA, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2015 Dec 15;112(50):E6917-26. doi: 10.1073/pnas.1517246112. Epub 2015 Nov 25.

Abstract

Understanding how our T-cell compartments are maintained requires knowledge of their population dynamics, which are typically quantified over days to weeks using the administration of labels incorporated into the DNA of dividing cells. These studies present snapshots of homeostatic dynamics and have suggested that lymphocyte populations are heterogeneous with respect to rates of division and/or death, although resolving the details of such heterogeneity is problematic. Here we present a method of studying the population dynamics of T cells in mice over timescales of months to years that reveals heterogeneity in rates of division and death with respect to the age of the host at the time of thymic export. We use the transplant conditioning drug busulfan to ablate hematopoetic stem cells in young mice but leave the peripheral lymphocyte compartments intact. Following their reconstitution with congenically labeled (donor) bone marrow, we followed the dilution of peripheral host T cells by donor-derived lymphocytes for a year after treatment. Describing these kinetics with mathematical models, we estimate rates of thymic production, division and death of naive CD4 and CD8 T cells. Population-averaged estimates of mean lifetimes are consistent with earlier studies, but we find the strongest support for a model in which both naive T-cell pools contain kinetically distinct subpopulations of older host-derived cells with self-renewing capacity that are resistant to displacement by naive donor lymphocytes. We speculate that these incumbent cells are conditioned or selected for increased fitness through homeostatic expansion into the lymphopenic neonatal environment.

摘要

要了解我们的T细胞区室是如何维持的,需要了解它们的群体动态,通常通过对分裂细胞DNA中掺入的标记物进行数天至数周的管理来量化这些动态。这些研究呈现了稳态动态的快照,并表明淋巴细胞群体在分裂和/或死亡速率方面存在异质性,尽管解析这种异质性的细节存在问题。在这里,我们提出了一种在数月至数年的时间尺度上研究小鼠T细胞群体动态的方法,该方法揭示了胸腺输出时宿主年龄相关的分裂和死亡速率的异质性。我们使用移植预处理药物白消安来清除幼鼠的造血干细胞,但保持外周淋巴细胞区室完整。在用同基因标记(供体)骨髓重建后,我们在治疗后一年跟踪供体来源的淋巴细胞对外周宿主T细胞的稀释情况。用数学模型描述这些动力学,我们估计了幼稚CD4和CD8 T细胞的胸腺生成、分裂和死亡速率。平均寿命的群体平均估计与早期研究一致,但我们发现最有力的支持模型是,两个幼稚T细胞库都包含具有自我更新能力的、来自老年宿主的动力学上不同的亚群,这些亚群对幼稚供体淋巴细胞的替代具有抗性。我们推测,这些现存细胞是通过向淋巴细胞减少的新生儿环境的稳态扩张而被调节或选择以提高适应性的。

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