A novel microglial subset plays a key role in myelinogenesis in developing brain

一种新型小胶质细胞亚群在大脑发育过程中的髓鞘形成中起着关键作用

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作者:Agnieszka Wlodarczyk, Inge R Holtman, Martin Krueger, Nir Yogev, Julia Bruttger, Reza Khorooshi, Anouk Benmamar-Badel, Jelkje J de Boer-Bergsma, Nellie A Martin, Khalad Karram, Isabella Kramer, Erik Wgm Boddeke, Ari Waisman, Bart Jl Eggen, Trevor Owens

Abstract

Microglia are resident macrophages of the central nervous system that contribute to homeostasis and neuroinflammation. Although known to play an important role in brain development, their exact function has not been fully described. Here, we show that in contrast to healthy adult and inflammation-activated cells, neonatal microglia show a unique myelinogenic and neurogenic phenotype. A CD11c+ microglial subset that predominates in primary myelinating areas of the developing brain expresses genes for neuronal and glial survival, migration, and differentiation. These cells are the major source of insulin-like growth factor 1, and its selective depletion from CD11c+ microglia leads to impairment of primary myelination. CD11c-targeted toxin regimens induced a selective transcriptional response in neonates, distinct from adult microglia. CD11c+ microglia are also found in clusters of repopulating microglia after experimental ablation and in neuroinflammation in adult mice, but despite some similarities, they do not recapitulate neonatal microglial characteristics. We therefore identify a unique phenotype of neonatal microglia that deliver signals necessary for myelination and neurogenesis.

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