Cerebrospinal fluid outflow through skull channels instructs cranial hematopoiesis
Pulous, F. E.; Cruz-Hernandez, J. C.; Yang, C.; Kaya, Z.; Wojtkiewicz, G.; Capen, D.; Brown, D.; Wu, J. W.; Vinego, C.; Yamazoe, M.; Grune, J.; Schloss, M. J.; Rohde, D.; Richter, D.; McAlpine, C. S.; Panizzi, P.; Weissleder, R.; Kim, D.-E.; Swirski, F. K.; Lin, C. P.; Moskowitz, M. M.; Nahrendorf, M.
Show abstract
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, particularly dural lymphatic vessels that allow cerebrospinal fluid outflow, facilitate intersystem communication. Here we observe that cerebrospinal fluid exits into the skull bone marrow. Fluorescent tracers injected into the cisterna magna of mice travel through hundreds of sub-millimeter skull channels into the calvarial marrow. During meningitis, bacteria usurp this perivascular route to infect the skulls hematopoietic niches and initiate cranial hematopoiesis ahead of remote tibial sites. Because skull channels also directly provide leukocytes to meninges, the privileged sampling of brain-derived danger signals in cerebrospinal fluid by regional marrow has broad implications for neurological disorders. One-Sentence SummarySkull channels transport cerebrospinal fluid from the subarachnoid space to the cranial bone marrow via a perivascular route, which bacteria use during meningitis.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Relationship between Birth Timing, Circuit Wiring, and Physiological ResponseProperties of Cerebellar Granule Cells 94%
- Chromatin remodeler Arid1a regulates subplate neuron identity and wiring of cortical connectivity 94%
- Thalamus-cortex interactions drive cell type-specific cortical development in human pluripotent stem cell-derived assembloids 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.