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The Pathophysiological Role of Microglia in Dynamic Surveillance, Phagocytosis and Structural Remodeling of the
Cataldo Arcuri1, Carmen Mecca1, Roberta Bianchi1
1Department of Experimental Medicine, Centro Universitario per la Ricerca sulla Genomica Funzionale, Perugia Medical School, University of PerugiaPerugia, Italy.
Abstract:
In vertebrates, during an early wave of hematopoiesis in the yolk sac between embryonic day E7.0 and E9.0, cells of mesodermal leaflet addressed to macrophage lineage enter in developing central nervous system (CNS) and originate the developing native microglial cells. Depending on the species, microglial cells represent 5-20% of glial cells resident in adult brain. Here, we briefly discuss some canonical functions of the microglia, i.e., cytokine secretion and functional transition from M1 to M2 phenotype. In addition, we review studies on the non-canonical functions of microglia such as regulation of phagocytosis, synaptic pruning, and sculpting postnatal neural circuits. In this latter context the contribution of microglia to some neurodevelopmental disorders is now well established. Nasu-Hakola (NHD) disease is considered a primary microgliopathy with alterations of the DNAX activation protein 12 (DAP12)-Triggering receptor expressed on myeloid cells 2 (TREM-2) signaling and removal of macromolecules and apoptotic cells followed by secondary microglia activation. In Rett syndrome Mecp2-/- microglia shows a substantial impairment of phagocytic ability, although the role of microglia is not yet clear. In a mouse model of Tourette syndrome (TS), microglia abnormalities have also been described, and deficient microglia-mediated neuroprotection is obvious. Here we review the role of microglial cells in neurodevelopmental disorders without inflammation and on the complex role of microglia in developing CNS.
Insights
Microglia, the brain's immune cells, originate from yolk sac precursors and play crucial roles in both normal brain development and neurodevelopmental disorders. Their functions extend beyond immunity to include synaptic pruning and circuit sculpting.
Area of Science:
- Neuroscience
- Immunology
- Developmental Biology
Background:
- Microglia are the resident immune cells of the central nervous system (CNS), originating from embryonic yolk sac precursors.
- They constitute 5-20% of glial cells in the adult brain and perform both canonical immune functions and non-canonical roles in neural development.
Purpose of the Study:
- To review the canonical and non-canonical functions of microglia.
- To explore the contribution of microglia to neurodevelopmental disorders, focusing on conditions like Nasu-Hakola disease, Rett syndrome, and Tourette syndrome.
Main Methods:
- Literature review of studies on microglial functions and their role in neurodevelopmental disorders.
- Discussion of specific genetic alterations and signaling pathways involved in microglial dysfunction.
Main Results:
- Microglia are involved in cytokine secretion, M1/M2 polarization, phagocytosis, synaptic pruning, and neural circuit sculpting.
- Dysfunctional microglia are implicated in primary microgliopathies like Nasu-Hakola disease and may play a role in Rett syndrome and Tourette syndrome.
Conclusions:
- Microglia have diverse roles in CNS development and function, extending beyond immune responses.
- Understanding microglial roles in neurodevelopmental disorders is crucial for identifying potential therapeutic targets.
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