Vikrim Lohat, Raffay Ilyas, Qing Wei, Darellynn Oo, Jingna Xue, Isabelle Horsman, Keith Keane, Matthew Stephens, Pierre-Yves von der Weid, Shan Liao
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Distinct Role of Dural and Leptomeningeal Macrophages in Maintaining Cerebrospinal Fluid Drainage to Meningeal Lymphatic Vessels.
Cerebrospinal fluid (CSF) drains along the perivascular space, known as the glymphatic system, to the meninges, where meningeal lymphatic vessels (MLVs) remove toxic products with excess CSF from the brain. Macrophages are widely present in the leptomeninges and dura mater of meninges. However, whether leptomeningeal and dural macrophages play the same or distinct roles in maintaining optimal CSF drainage remains unclear. By intracisterna magna injection of clodronate liposomes, we observed a comprehensive depletion of leptomeningeal macrophages, a selective reduction in dural sinus-associated macrophages, a decreased density of MLVs, and disrupted CSF drainage. Further studies showed that macrophage depletion was associated with the infiltration of monocytes and the recovery of monocyte-derived macrophages. By day 14 after clodronate liposome, although both dural macrophages and MLVs had recovered, leptomeningeal macrophages and CSF drainage had not been restored. Furthermore, the study showed that i.p. injection of anti-colony-stimulating factor 1 receptor antibody selectively depleted macrophages in the dura mater but not in the leptomeninges, without affecting MLVs or CSF drainage. The study suggests that leptomeningeal macrophages, distinct from the dural macrophages, are essential for CSF drainage to the MLVs.
期刊介绍:
The American Journal of Pathology, official journal of the American Society for Investigative Pathology, published by Elsevier, Inc., seeks high-quality original research reports, reviews, and commentaries related to the molecular and cellular basis of disease. The editors will consider basic, translational, and clinical investigations that directly address mechanisms of pathogenesis or provide a foundation for future mechanistic inquiries. Examples of such foundational investigations include data mining, identification of biomarkers, molecular pathology, and discovery research. Foundational studies that incorporate deep learning and artificial intelligence are also welcome. High priority is given to studies of human disease and relevant experimental models using molecular, cellular, and organismal approaches.