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Publication : NGF steers microglia toward a neuroprotective phenotype.

First Author  Rizzi C Year  2018
Journal  Glia Volume  66
Issue  7 Pages  1395-1416
PubMed ID  29473218 Mgi Jnum  J:263179
Mgi Id  MGI:6160566 Doi  10.1002/glia.23312
Citation  Rizzi C, et al. (2018) NGF steers microglia toward a neuroprotective phenotype. Glia 66(7):1395-1416
abstractText  Microglia are the sentinels of the brain but a clear understanding of the factors that modulate their activation in physiological and pathological conditions is still lacking. Here we demonstrate that Nerve Growth Factor (NGF) acts on microglia by steering them toward a neuroprotective and anti-inflammatory phenotype. We show that microglial cells express functional NGF receptors in vitro and ex vivo. Our transcriptomic analysis reveals how, in primary microglia, NGF treatment leads to a modulation of motility, phagocytosis and degradation pathways. At the functional level, NGF induces an increase in membrane dynamics and macropinocytosis and, in vivo, it activates an outward rectifying current that appears to modulate glutamatergic neurotransmission in nearby neurons. Since microglia are supposed to be a major player in Abeta peptide clearance in the brain, we tested the effects of NGF on its phagocytosis. NGF was shown to promote TrkA-mediated engulfment of Abeta by microglia, and to enhance its degradation. Additionally, the proinflammatory activation induced by Abeta treatment is counteracted by the concomitant administration of NGF. Moreover, by acting specifically on microglia, NGF protects neurons from the Abeta-induced loss of dendritic spines and inhibition of long term potentiation. Finally, in an ex-vivo setup of acute brain slices, we observed a similar increase in Abeta engulfment by microglial cells under the influence of NGF. Our work substantiates a role for NGF in the regulation of microglial homeostatic activities and points toward this neurotrophin as a neuroprotective agent in Abeta accumulation pathologies, via its anti-inflammatory activity on microglia.
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