Sofia P. das Neves, Nickoleta Delivanoglou, Yingxue Ren, Chiara Starvaggi Cucuzza, Mateusz Makuch, Francisco Almeida, Guadalupe Sanchez, Megan J. Barber, Shanon Rego, Racquelle Schrader, Ayman H. Faroqi, Jean-Leon Thomas, Pamela J. McLean, Tiago Gil Oliveira, Sarosh R. Irani, Fredrik Piehl, Sandro Da Mesquita
{"title":"Meningeal lymphatic function promotes oligodendrocyte survival and brain myelination","authors":"Sofia P. das Neves, Nickoleta Delivanoglou, Yingxue Ren, Chiara Starvaggi Cucuzza, Mateusz Makuch, Francisco Almeida, Guadalupe Sanchez, Megan J. Barber, Shanon Rego, Racquelle Schrader, Ayman H. Faroqi, Jean-Leon Thomas, Pamela J. McLean, Tiago Gil Oliveira, Sarosh R. Irani, Fredrik Piehl, Sandro Da Mesquita","doi":"10.1016/j.immuni.2024.08.004","DOIUrl":null,"url":null,"abstract":"<p>The precise neurophysiological changes prompted by meningeal lymphatic dysfunction remain unclear. Here, we showed that inducing meningeal lymphatic vessel ablation in adult mice led to gene expression changes in glial cells, followed by reductions in mature oligodendrocyte numbers and specific lipid species in the brain. These phenomena were accompanied by altered meningeal adaptive immunity and brain myeloid cell activation. During brain remyelination, meningeal lymphatic dysfunction provoked a state of immunosuppression in the brain that contributed to delayed spontaneous oligodendrocyte replenishment and axonal loss. The deficiencies in mature oligodendrocytes and neuroinflammation due to impaired meningeal lymphatic function were solely recapitulated in immunocompetent mice. Patients diagnosed with multiple sclerosis presented reduced vascular endothelial growth factor C in the cerebrospinal fluid, particularly shortly after clinical relapses, possibly indicative of poor meningeal lymphatic function. These data demonstrate that meningeal lymphatics regulate oligodendrocyte function and brain myelination, which might have implications for human demyelinating diseases.</p>","PeriodicalId":13269,"journal":{"name":"Immunity","volume":"2014 1","pages":""},"PeriodicalIF":25.5000,"publicationDate":"2024-08-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Immunity","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.1016/j.immuni.2024.08.004","RegionNum":1,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"IMMUNOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
The precise neurophysiological changes prompted by meningeal lymphatic dysfunction remain unclear. Here, we showed that inducing meningeal lymphatic vessel ablation in adult mice led to gene expression changes in glial cells, followed by reductions in mature oligodendrocyte numbers and specific lipid species in the brain. These phenomena were accompanied by altered meningeal adaptive immunity and brain myeloid cell activation. During brain remyelination, meningeal lymphatic dysfunction provoked a state of immunosuppression in the brain that contributed to delayed spontaneous oligodendrocyte replenishment and axonal loss. The deficiencies in mature oligodendrocytes and neuroinflammation due to impaired meningeal lymphatic function were solely recapitulated in immunocompetent mice. Patients diagnosed with multiple sclerosis presented reduced vascular endothelial growth factor C in the cerebrospinal fluid, particularly shortly after clinical relapses, possibly indicative of poor meningeal lymphatic function. These data demonstrate that meningeal lymphatics regulate oligodendrocyte function and brain myelination, which might have implications for human demyelinating diseases.
脑膜淋巴功能障碍引发的确切神经生理学变化仍不清楚。在这里,我们发现诱导成年小鼠脑膜淋巴管消融会导致胶质细胞基因表达的变化,继而导致大脑中成熟少突胶质细胞数量和特定脂质种类的减少。这些现象伴随着脑膜适应性免疫和脑髓细胞活化的改变。在大脑再髓鞘化过程中,脑膜淋巴功能障碍引发了大脑免疫抑制状态,导致自发性少突胶质细胞补充延迟和轴突丢失。脑膜淋巴功能受损导致的成熟少突胶质细胞缺乏和神经炎症只在免疫功能正常的小鼠身上重现。被诊断为多发性硬化症的患者脑脊液中的血管内皮生长因子 C 减少,尤其是在临床复发后不久,这可能表明脑膜淋巴功能低下。这些数据表明,脑膜淋巴管能调节少突胶质细胞功能和脑髓形成,这可能对人类脱髓鞘疾病有影响。
期刊介绍:
Immunity is a publication that focuses on publishing significant advancements in research related to immunology. We encourage the submission of studies that offer groundbreaking immunological discoveries, whether at the molecular, cellular, or whole organism level. Topics of interest encompass a wide range, such as cancer, infectious diseases, neuroimmunology, autoimmune diseases, allergies, mucosal immunity, metabolic diseases, and homeostasis.