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信号转导和转录激活因子1(STAT1)在创伤性脑损伤小鼠模型中导致小胶质细胞/巨噬细胞炎症和神经功能障碍。

STAT1 Contributes to Microglial/Macrophage Inflammation and Neurological Dysfunction in a Mouse Model of Traumatic Brain Injury.

作者信息

Zhao Yongfang, Ma Cheng, Chen Caixia, Li Sicheng, Wang Yangfan, Yang Tuo, Stetler R Anne, Bennett Michael V L, Dixon C Edward, Chen Jun, Shi Yejie

机构信息

Pittsburgh Institute of Brain Disorders & Recovery and Department of Neurology, University of Pittsburgh, Pittsburgh, Pennsylvania 15213.

Geriatric Research, Education and Clinical Center, Veterans Affairs Pittsburgh Health Care System, Pittsburgh, Pennsylvania 15261.

出版信息

J Neurosci. 2022 Sep 28;42(39):7466-7481. doi: 10.1523/JNEUROSCI.0682-22.2022.

Abstract

Traumatic brain injury (TBI) triggers a plethora of inflammatory events in the brain that aggravate secondary injury and impede tissue repair. Resident microglia (Mi) and blood-borne infiltrating macrophages (MΦ) are major players of inflammatory responses in the post-TBI brain and possess high functional heterogeneity. However, the plasticity of these cells has yet to be exploited to develop therapies that can mitigate brain inflammation and improve the outcome after TBI. This study investigated the transcription factor STAT1 as a key determinant of proinflammatory Mi/MΦ responses and aimed to develop STAT1 as a novel therapeutic target for TBI using a controlled cortical impact model of TBI on adult male mice. TBI induced robust upregulation of STAT1 in the brain at the subacute injury stage, which occurred primarily in Mi/MΦ. Intraperitoneal administration of fludarabine, a selective STAT1 inhibitor, markedly alleviated proinflammatory Mi/MΦ responses and brain inflammation burden after TBI. Such phenotype-modulating effects of fludarabine on post-TBI Mi/MΦ were reproduced by tamoxifen-induced, selective KO of STAT1 in Mi/MΦ (STAT1 mKO). By propelling Mi/MΦ away from a detrimental proinflammatory phenotype, STAT1 mKO was sufficient to reduce long-term neurologic deficits and brain lesion size after TBI. Importantly, short-term fludarabine treatment after TBI elicited long-lasting improvement of TBI outcomes, but this effect was lost on STAT1 mKO mice. Together, our study provided the first line of evidence that STAT1 causatively determines the proinflammatory phenotype of brain Mi/MΦ after TBI. We also showed promising preclinical data supporting the use of fludarabine as a novel immunomodulating therapy to TBI. The functional phenotype of microglia and macrophages (Mi/MΦ) critically influences brain inflammation and the outcome after traumatic brain injury (TBI); however, no therapies have been developed to modulate Mi/MΦ functions to treat TBI. Here we report, for the first time, that the transcription factor STAT1 is a key mediator of proinflammatory Mi/MΦ responses in the post-TBI brain, the specific deletion of which ameliorates neuroinflammation and improves long-term functional recovery after TBI. We also show excellent efficacy of a selective STAT1 inhibitor fludarabine against TBI-induced functional deficits and brain injury using a mouse model, presenting STAT1 as a promising therapeutic target for TBI.

摘要

创伤性脑损伤(TBI)会在大脑中引发大量炎症事件,这些事件会加重继发性损伤并阻碍组织修复。驻留小胶质细胞(Mi)和血源性浸润巨噬细胞(MΦ)是TBI后大脑炎症反应的主要参与者,且具有高度的功能异质性。然而,这些细胞的可塑性尚未被用于开发能够减轻脑部炎症并改善TBI后预后的疗法。本研究调查了转录因子STAT1作为促炎性Mi/MΦ反应的关键决定因素,并旨在使用成年雄性小鼠的TBI控制性皮质撞击模型,将STAT1开发为TBI的新型治疗靶点。TBI在亚急性损伤阶段诱导大脑中STAT1的强烈上调,这主要发生在Mi/MΦ中。腹腔注射氟达拉滨,一种选择性STAT1抑制剂,可显著减轻TBI后的促炎性Mi/MΦ反应和脑部炎症负担。氟达拉滨对TBI后Mi/MΦ的这种表型调节作用通过他莫昔芬诱导的Mi/MΦ中STAT1的选择性敲除(STAT1 mKO)得以重现。通过促使Mi/MΦ远离有害的促炎表型,STAT1 mKO足以减少TBI后的长期神经功能缺损和脑损伤大小。重要的是,TBI后短期氟达拉滨治疗可引起TBI预后的持久改善,但这种效应在STAT1 mKO小鼠中消失。总之,我们的研究提供了第一线证据,表明STAT1决定性地决定了TBI后大脑Mi/MΦ的促炎表型。我们还展示了有前景的临床前数据,支持使用氟达拉滨作为TBI的新型免疫调节疗法。小胶质细胞和巨噬细胞(Mi/MΦ)的功能表型对创伤性脑损伤(TBI)后的脑部炎症和预后有至关重要的影响;然而,尚未开发出调节Mi/MΦ功能来治疗TBI的疗法。在此我们首次报告,转录因子STAT1是TBI后大脑中促炎性Mi/MΦ反应的关键介质,其特异性缺失可改善神经炎症并改善TBI后的长期功能恢复。我们还使用小鼠模型展示了选择性STAT1抑制剂氟达拉滨对TBI诱导的功能缺损和脑损伤的优异疗效,表明STAT1是TBI的一个有前景的治疗靶点。

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