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成年小鼠软脑膜的分子解剖结构。

Molecular anatomy of adult mouse leptomeninges.

作者信息

Pietilä Riikka, Del Gaudio Francesca, He Liqun, Vázquez-Liébanas Elisa, Vanlandewijck Michael, Muhl Lars, Mocci Giuseppe, Bjørnholm Katrine D, Lindblad Caroline, Fletcher-Sandersjöö Alexander, Svensson Mikael, Thelin Eric P, Liu Jianping, van Voorden A Jantine, Torres Monica, Antila Salli, Xin Li, Karlström Helena, Storm-Mathisen Jon, Bergersen Linda Hildegard, Moggio Aldo, Hansson Emil M, Ulvmar Maria H, Nilsson Per, Mäkinen Taija, Andaloussi Mäe Maarja, Alitalo Kari, Proulx Steven T, Engelhardt Britta, McDonald Donald M, Lendahl Urban, Andrae Johanna, Betsholtz Christer

机构信息

Department of Immunology, Genetics and Pathology, Rudbeck Laboratory, Uppsala University, 75185 Uppsala, Sweden.

Department of Medicine Huddinge, Karolinska Institutet, 14157 Huddinge, Sweden; Department of Cell and Molecular Biology, Karolinska Institutet, 17177 Stockholm, Sweden.

出版信息

Neuron. 2023 Dec 6;111(23):3745-3764.e7. doi: 10.1016/j.neuron.2023.09.002. Epub 2023 Sep 29.

Abstract

Leptomeninges, consisting of the pia mater and arachnoid, form a connective tissue investment and barrier enclosure of the brain. The exact nature of leptomeningeal cells has long been debated. In this study, we identify five molecularly distinct fibroblast-like transcriptomes in cerebral leptomeninges; link them to anatomically distinct cell types of the pia, inner arachnoid, outer arachnoid barrier, and dural border layer; and contrast them to a sixth fibroblast-like transcriptome present in the choroid plexus and median eminence. Newly identified transcriptional markers enabled molecular characterization of cell types responsible for adherence of arachnoid layers to one another and for the arachnoid barrier. These markers also proved useful in identifying the molecular features of leptomeningeal development, injury, and repair that were preserved or changed after traumatic brain injury. Together, the findings highlight the value of identifying fibroblast transcriptional subsets and their cellular locations toward advancing the understanding of leptomeningeal physiology and pathology.

摘要

软脑膜由软膜和蛛网膜组成,形成了大脑的结缔组织覆盖物和屏障包膜。软脑膜细胞的确切性质长期以来一直存在争议。在本研究中,我们在脑软脑膜中鉴定出五种分子上不同的成纤维细胞样转录组;将它们与软膜、内蛛网膜、外蛛网膜屏障和硬脑膜边界层的解剖学上不同的细胞类型联系起来;并将它们与脉络丛和正中隆起中存在的第六种成纤维细胞样转录组进行对比。新鉴定的转录标记物能够对负责蛛网膜层相互粘附和蛛网膜屏障的细胞类型进行分子表征。这些标记物在识别创伤性脑损伤后保留或改变的软脑膜发育、损伤和修复的分子特征方面也被证明是有用的。总之,这些发现突出了识别成纤维细胞转录亚群及其细胞位置对于推进对软脑膜生理学和病理学理解的价值。

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