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CSF-1 协调调节组织巨噬细胞和树突状细胞群体动态。

Coordinate regulation of tissue macrophage and dendritic cell population dynamics by CSF-1.

机构信息

Department of Pathology, New York University School of Medicine, New York, NY 10016, USA.

出版信息

J Exp Med. 2011 Aug 29;208(9):1901-16. doi: 10.1084/jem.20110866. Epub 2011 Aug 8.

Abstract

Tissue macrophages (Mφs) and dendritic cells (DCs) play essential roles in tissue homeostasis and immunity. How these cells are maintained at their characteristic densities in different tissues has remained unclear. Aided by a novel flow cytometric technique for assessing relative rates of blood-borne precursor recruitment, we examined Mφ and DC population dynamics in the pregnant mouse uterus, where rapid tissue growth facilitated a dissection of underlying regulatory mechanisms. We demonstrate how Mφ dynamics, and thus Mφ tissue densities, are locally controlled by CSF-1, a pleiotropic growth factor whose in situ level of activity varied widely between uterine tissue layers. CSF-1 acted in part by inducing Mφ proliferation and in part by stimulating the extravasation of Ly6C(hi) monocytes (Mos) that served as Mφ precursors. Mo recruitment was dependent on the production of CCR2 chemokine receptor ligands by uterine Mφs in response to CSF-1. Unexpectedly, a parallel CSF-1-regulated, but CCR2-independent pathway influenced uterine DC tissue densities by controlling local pre-DC extravasation rates. Together, these data provide cellular and molecular insight into the regulation of Mφ tissue densities under noninflammatory conditions and reveal a central role for CSF-1 in the coordination of Mφ and DC homeostasis.

摘要

组织巨噬细胞 (Mφ) 和树突状细胞 (DC) 在组织稳态和免疫中发挥着重要作用。这些细胞如何在不同组织中保持其特有的密度仍然不清楚。借助一种新的流式细胞术技术来评估血液源性前体的相对招募率,我们研究了怀孕小鼠子宫中 Mφ 和 DC 群体的动态变化,其中快速的组织生长促进了对潜在调节机制的剖析。我们展示了 Mφ 动态,以及因此 Mφ 组织密度,如何受到 CSF-1 的局部控制,CSF-1 是一种多效生长因子,其在子宫组织层之间的原位活性差异很大。CSF-1 通过诱导 Mφ 增殖和刺激 Ly6C(hi)单核细胞 (Mos) 的血管外渗在一定程度上发挥作用,Mos 作为 Mφ 前体。Mo 的募集依赖于 CSF-1 刺激下子宫 Mφ 产生 CCR2 趋化因子受体配体。出乎意料的是,一条平行的 CSF-1 调节但 CCR2 不依赖的途径通过控制局部前 DC 血管外渗率来影响子宫 DC 组织密度。这些数据为非炎症条件下 Mφ 组织密度的调节提供了细胞和分子见解,并揭示了 CSF-1 在协调 Mφ 和 DC 稳态中的核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71cb/3171096/cb1269a60af4/JEM_20110866_GS_Fig3.jpg

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