Intranasal delivery of interleukin-4 attenuates chronic cognitive deficits via beneficial microglial responses in experimental traumatic brain injury.

Hongjian Pu, Cheng Ma, Yongfang Zhao, Yangfan Wang, Wenting Zhang, Wanying Miao, Fang Yu, Xiaoming Hu, Yejie Shi, Rehana K Leak, T Kevin Hitchens, C Edward Dixon, Michael Vl Bennett, Jun Chen
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引用次数: 15

Abstract

Traumatic brain injury (TBI) is commonly followed by long-term cognitive deficits that severely impact the quality of life in survivors. Recent studies suggest that microglial/macrophage (Mi/MΦ) polarization could have multidimensional impacts on post-TBI neurological outcomes. Here, we report that repetitive intranasal delivery of interleukin-4 (IL-4) nanoparticles for 4 weeks after controlled cortical impact improved hippocampus-dependent spatial and non-spatial cognitive functions in adult C57BL6 mice, as assessed by a battery of neurobehavioral tests for up to 5 weeks after TBI. IL-4-elicited enhancement of cognitive functions was associated with improvements in the integrity of the hippocampus at the functional (e.g., long-term potentiation) and structural levels (CA3 neuronal loss, diffusion tensor imaging of white matter tracts, etc.). Mechanistically, IL-4 increased the expression of PPARγ and arginase-1 within Mi/MΦ, thereby driving microglia toward a global inflammation-resolving phenotype. Notably, IL-4 failed to shift microglial phenotype after TBI in Mi/MΦ-specific PPARγ knockout (mKO) mice, indicating an obligatory role for PPARγ in IL-4-induced Mi/MΦ polarization. Accordingly, post-TBI treatment with IL-4 failed to improve hippocampal integrity or cognitive functions in PPARγ mKO mice. These results demonstrate that administration of exogenous IL-4 nanoparticles stimulates PPARγ-dependent beneficial Mi/MΦ responses, and improves hippocampal function after TBI.

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实验性外伤性脑损伤患者鼻内注入白细胞介素-4可通过有益的小胶质细胞反应减轻慢性认知缺陷。
创伤性脑损伤(TBI)通常伴随着长期认知缺陷,严重影响幸存者的生活质量。最近的研究表明,小胶质细胞/巨噬细胞(Mi/MΦ)极化可能对脑外伤后神经系统预后有多方面的影响。在这里,我们报告了在脑外伤后长达5周的一系列神经行为测试中,在控制性皮质冲击后4周内反复鼻内递送白素-4 (IL-4)纳米颗粒可改善成年C57BL6小鼠海马依赖的空间和非空间认知功能。il -4诱导的认知功能增强与海马在功能(如长时程增强)和结构水平(CA3神经元丧失、白质束弥散张量成像等)上的完整性改善有关。在机制上,IL-4增加了Mi/MΦ中PPARγ和精氨酸酶-1的表达,从而推动小胶质细胞走向全局炎症解决表型。值得注意的是,IL-4在Mi/MΦ-specific PPARγ敲除(mKO)小鼠TBI后未能改变小胶质细胞表型,这表明PPARγ在IL-4诱导的Mi/MΦ极化中起着必要的作用。因此,脑外伤后用IL-4治疗不能改善PPARγ mKO小鼠的海马完整性或认知功能。这些结果表明,外源性IL-4纳米颗粒刺激ppar γ依赖的有益Mi/MΦ反应,并改善脑外伤后海马功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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