Center for Systems Biology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.
Department of Radiology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.
Nat Neurosci. 2022 May;25(5):567-576. doi: 10.1038/s41593-022-01060-2. Epub 2022 May 2.
Interactions between the immune and central nervous systems strongly influence brain health. Although the blood-brain barrier restricts this crosstalk, we now know that meningeal gateways through brain border tissues facilitate intersystem communication. Cerebrospinal fluid (CSF), which interfaces with the glymphatic system and thereby drains the brain's interstitial and perivascular spaces, facilitates outward signaling beyond the blood-brain barrier. In the present study, we report that CSF can exit into the skull bone marrow. Fluorescent tracers injected into the cisterna magna of mice migrate along perivascular spaces of dural blood vessels and then travel through hundreds of sub-millimeter skull channels into the calvarial marrow. During meningitis, bacteria hijack this route to invade the skull's hematopoietic niches and initiate cranial hematopoiesis ahead of remote tibial sites. As skull channels also directly provide leukocytes to meninges, the privileged sampling of brain-derived danger signals in CSF by regional marrow may have broad implications for inflammatory neurological disorders.
免疫系统和中枢神经系统之间的相互作用强烈影响大脑健康。尽管血脑屏障限制了这种串扰,但我们现在知道,脑膜通过脑边界组织的门户促进了系统间的通讯。脑脊液(CSF)与神经胶质淋巴系统相互作用,从而排出大脑的细胞外和血管周围空间,促进了血脑屏障以外的外向信号。在本研究中,我们报告 CSF 可以进入颅骨骨髓。荧光示踪剂注入小鼠的枕大池后,沿着硬脑膜血管的血管周围空间迁移,然后通过数百个亚毫米颅骨通道进入颅骨骨髓。在脑膜炎期间,细菌劫持这条途径入侵颅骨的造血龛,并在远程胫骨部位之前启动颅内造血。由于颅骨通道也直接将白细胞提供给脑膜,因此,区域性骨髓对 CSF 中源自大脑的危险信号的优先采样可能对炎症性神经疾病具有广泛的意义。