CCR2 deficiency alters activation of microglia subsets in traumatic brain injury

CCR2 缺陷会改变创伤性脑损伤中小胶质细胞亚群的激活。

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作者:Kerri Somebang,Joshua Rudolph,Isabella Imhof,Luyi Li,Erene C Niemi,Judy Shigenaga,Huy Tran,T Michael Gill,Iris Lo,Brian A Zabel,Gabriela Schmajuk,Brian T Wipke,Stefka Gyoneva,Luke Jandreski,Michael Craft,Gina Benedetto,Edward D Plowey,Israel Charo,James Campbell,Chun Jimmie Ye,S Scott Panter,Mary C Nakamura,Walter Eckalbar,Christine L Hsieh

Abstract

In traumatic brain injury (TBI), a diversity of brain resident and peripherally derived myeloid cells have the potential to worsen damage and/or to assist in healing. We define the heterogeneity of microglia and macrophage phenotypes during TBI in wild-type (WT) mice and Ccr2-/- mice, which lack macrophage influx following TBI and are resistant to brain damage. We use unbiased single-cell RNA sequencing methods to uncover 25 microglia, monocyte/macrophage, and dendritic cell subsets in acute TBI and normal brains. We find alterations in transcriptional profiles of microglia subsets in Ccr2-/- TBI mice compared to WT TBI mice indicating that infiltrating monocytes/macrophages influence microglia activation to promote a type I IFN response. Preclinical pharmacological blockade of hCCR2 after injury reduces expression of IFN-responsive gene, Irf7, and improves outcomes. These data extend our understanding of myeloid cell diversity and crosstalk in brain trauma and identify therapeutic targets in myeloid subsets.

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