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学術論文

Specification of CNS macrophage subsets occurs postnatally in defined niches

MPS-Authors

Paterson,  Neil
Max Planck Institute of Immunobiology and Epigenetics, Max Planck Society;

Nent,  Elisa
Max Planck Institute of Immunobiology and Epigenetics, Max Planck Society;

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Lämmermann,  Tim
Max Planck Institute of Immunobiology and Epigenetics, Max Planck Society;

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引用

Masuda, T., Amann, L., Monaco, G., Sankowski, R., Staszewski, O., Krueger, M., Gaudio, F. D., He, L., Paterson, N., Nent, E., Fernández-Klett, F., Yamasaki, A., Frosch, M., Fliegauf, M., Bosch, L. F. P., Ulupinar, H., Hagemeyer, N., Schreiner, D., Dorrier, C., Tsuda, M., Grothe, C., Joutel, A., Daneman, R., Betsholtz, C., Lendahl, U., Knobeloch, K.-P., Lämmermann, T., Priller, J., Kierdorf, K., & Prinz, M. (2022). Specification of CNS macrophage subsets occurs postnatally in defined niches. Nature, 604, 740-748. doi:10.1038/s41586-022-04596-2.


引用: https://hdl.handle.net/21.11116/0000-000D-0DDF-B
要旨
All tissue-resident macrophages of the central nervous system (CNS)-including parenchymal microglia, as well as CNS-associated macrophages (CAMs1) such as meningeal and perivascular macrophages2-7-are part of the CNS endogenous innate immune system that acts as the first line of defence during infections or trauma2,8-10. It has been suggested that microglia and all subsets of CAMs are derived from prenatal cellular sources in the yolk sac that were defined as early erythromyeloid progenitors11-15. However, the precise ontogenetic relationships, the underlying transcriptional programs and the molecular signals that drive the development of distinct CAM subsets in situ are poorly understood. Here we show, using fate-mapping systems, single-cell profiling and cell-specific mutants, that only meningeal macrophages and microglia share a common prenatal progenitor. By contrast, perivascular macrophages originate from perinatal meningeal macrophages only after birth in an integrin-dependent manner. The establishment of perivascular macrophages critically requires the presence of arterial vascular smooth muscle cells. Together, our data reveal a precisely timed process in distinct anatomical niches for the establishment of macrophage subsets in the CNS.