Xu Huixin, Lotfy Peter, Gelb Sivan, Pragana Aja, Hehnly Christine, Shipley Frederick B, Zawadzki Miriam E, Cui Jin, Deng Liwen, Taylor Milo, Webb Mya, Lidov Hart G W, Andermann Mark L, Chiu Isaac M, Ordovas-Montanes Jose, Lehtinen Maria K
bioRxiv. 2023 Aug 8:2023.08.07.552298. doi: 10.1101/2023.08.07.552298.
The choroid plexus (ChP) is a vital brain barrier and source of cerebrospinal fluid (CSF). Here, we use chronic two-photon imaging in awake mice and single-cell transcriptomics to demonstrate that in addition to these roles, the ChP is a complex immune organ that regulates brain inflammation. In a mouse meningitis model, neutrophils and monocytes accumulated in ChP stroma and surged across the epithelial barrier into the CSF. Bi-directional recruitment of monocytes from the periphery and, unexpectedly, macrophages from the CSF to the ChP helped eliminate neutrophils and repair the barrier. Transcriptomic analyses detailed the molecular steps accompanying this process, including the discovery of epithelial cells that transiently specialized to nurture immune cells, coordinate their recruitment, survival, and differentiation, and ultimately, control the opening/closing of the ChP brain barrier. Collectively, we provide a new conceptual understanding and comprehensive roadmap of neuroinflammation at the ChP brain barrier.
脉络丛(ChP)是一种重要的脑屏障和脑脊液(CSF)的来源。在此,我们利用清醒小鼠的慢性双光子成像和单细胞转录组学来证明,除了这些作用外,脉络丛还是一个调节脑部炎症的复杂免疫器官。在小鼠脑膜炎模型中,中性粒细胞和单核细胞在脉络丛基质中积聚,并穿过上皮屏障涌入脑脊液。外周血单核细胞以及出乎意料地从脑脊液进入脉络丛的巨噬细胞的双向募集有助于清除中性粒细胞并修复屏障。转录组分析详细阐述了这一过程伴随的分子步骤,包括发现了短暂特化以滋养免疫细胞、协调其募集、存活和分化并最终控制脉络丛脑屏障开闭的上皮细胞。总体而言,我们提供了关于脉络丛脑屏障处神经炎症的新的概念理解和全面路线图。