TY - JOUR
T1 - Single-cell profiling of CNS border compartment leukocytes reveals that B cells and their progenitors reside in non-diseased meninges
AU - Schafflick, David
AU - Wolbert, Jolien
AU - Heming, Michael
AU - Thomas, Christian
AU - Hartlehnert, Maike
AU - Börsch, Anna Lena
AU - Ricci, Alessio
AU - Martín-Salamanca, Sandra
AU - Li, Xiaolin
AU - Lu, I. Na
AU - Pawlak, Mathias
AU - Minnerup, Jens
AU - Strecker, Jan Kolja
AU - Seidenbecher, Thomas
AU - Meuth, Sven G.
AU - Hidalgo, Andres
AU - Liesz, Arthur
AU - Wiendl, Heinz
AU - Meyer zu Horste, Gerd
N1 - Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer Nature America, Inc.
PY - 2021/9
Y1 - 2021/9
N2 - The CNS is ensheathed by the meninges and cerebrospinal fluid, and recent findings suggest that these CNS-associated border tissues have complex immunological functions. Unlike myeloid lineage cells, lymphocytes in border compartments have yet to be thoroughly characterized. Based on single-cell transcriptomics, we here identified a highly location-specific composition and expression profile of tissue-resident leukocytes in CNS parenchyma, pia-enriched subdural meninges, dura mater, choroid plexus and cerebrospinal fluid. The dura layer of the meninges contained a large population of B cells under homeostatic conditions in mice and rats. Murine dura B cells exhibited slow turnover and long-term tissue residency, and they matured in experimental neuroinflammation. The dura also contained B lineage progenitors at the pro-B cell stage typically not found outside of bone marrow, without direct influx from the periphery or the skull bone marrow. This identified the dura as an unexpected site of B cell residence and potentially of development in both homeostasis and neuroinflammation.
AB - The CNS is ensheathed by the meninges and cerebrospinal fluid, and recent findings suggest that these CNS-associated border tissues have complex immunological functions. Unlike myeloid lineage cells, lymphocytes in border compartments have yet to be thoroughly characterized. Based on single-cell transcriptomics, we here identified a highly location-specific composition and expression profile of tissue-resident leukocytes in CNS parenchyma, pia-enriched subdural meninges, dura mater, choroid plexus and cerebrospinal fluid. The dura layer of the meninges contained a large population of B cells under homeostatic conditions in mice and rats. Murine dura B cells exhibited slow turnover and long-term tissue residency, and they matured in experimental neuroinflammation. The dura also contained B lineage progenitors at the pro-B cell stage typically not found outside of bone marrow, without direct influx from the periphery or the skull bone marrow. This identified the dura as an unexpected site of B cell residence and potentially of development in both homeostasis and neuroinflammation.
UR - https://www.scopus.com/pages/publications/85110545945
U2 - 10.1038/s41593-021-00880-y
DO - 10.1038/s41593-021-00880-y
M3 - Article
C2 - 34253922
AN - SCOPUS:85110545945
SN - 1097-6256
VL - 24
SP - 1225
EP - 1234
JO - Nature Neuroscience
JF - Nature Neuroscience
IS - 9
ER -