首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Nonclassical Monocytes Mediate Secondary Injury, Neurocognitive Outcome, and Neutrophil Infiltration after Traumatic Brain Injury
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Nonclassical Monocytes Mediate Secondary Injury, Neurocognitive Outcome, and Neutrophil Infiltration after Traumatic Brain Injury

机译:非生理单核细胞在创伤性脑损伤后介导二次损伤,神经认知结果和中性粒细胞渗透

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摘要

Traumatic brain injury (TBI) results in rapid recruitment of leukocytes into the injured brain. Monocytes constitute a significant proportion of the initial infiltrate and have the potential to propagate secondary brain injury or generate an environment of repair and regeneration. Monocytes are a diverse population of cells (classical, intermediate, and nonclassical) with distinct functions, however, the recruitment order of these subpopulations to the injured brain largely remains unknown. Thus, we examined which monocyte subpopulations are required for the generation of early inflammatory infiltrate within the injured brain, and whether their depletion attenuates secondary injury or neurocognitive outcome. Global monocyte depletion correlated with significant improvements in brain edema, motor coordination, and working memory, and abrogated neutrophil infiltration into the injured brain. However, targeted depletion of classical monocytes alone had no effect on neutrophil recruitment to the site of injury, implicating the nonclassical monocyte in this process. In contrast, mice that have markedly reduced numbers of nonclassical monocytes (CX3CR1(-/-)) exhibited a significant reduction in neutrophil infiltration into the brain after TBI as compared with control mice. Our data suggest a critical role for nonclassical monocytes in the pathology of TBI in mice, including important clinical outcomes associated with mortality in this injury process.
机译:创伤性脑损伤(TBI)导致迅速招募白细胞进入受伤的大脑。单核细胞构成初始渗透的大量比例,并且具有繁殖的继发性脑损伤或产生修复和再生环境的可能性。单核细胞是一种不同的细胞群(经典,中间和非混合),但是,这些亚群对受伤大脑的招募顺序仍然未知。因此,我们检查了在受伤的脑内产生早期炎症浸润所需的单核细胞亚群,以及它们的耗尽是否衰减继发性损伤或神经认知结果。全球单核细胞耗竭与脑水肿,电机协调和工作记忆的显着改善相关,并且废弃中性粒细胞浸润到受伤的大脑中。然而,仅针对古典单核细胞的靶向耗竭对损伤部位没有影响嗜中性粒细胞募集,暗示了在该过程中的非生物单核细胞。相反,具有显着减少非生物质单核细胞数量的小鼠(CX3CR1( - / - ))在与对照小鼠相比,TBI后表现出中性粒细胞渗透到脑中的显着降低。我们的数据表明,在小鼠TBI病理到非生物单核细胞中的关键作用,包括在该伤害过程中与死亡率相关的重要临床结果。

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