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Origin and Emergence of Microglia in the CNS-An Interesting (Hi)story of an Eccentric Cell
Iasonas Dermitzakis1, Maria Eleni Manthou1, Soultana Meditskou1
1Department of Histology-Embryology, School of Medicine, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Abstract:
Microglia belong to tissue-resident macrophages of the central nervous system (CNS), representing the primary innate immune cells. This cell type constitutes ~7% of non-neuronal cells in the mammalian brain and has a variety of biological roles integral to homeostasis and pathophysiology from the late embryonic to adult brain. Its unique identity that distinguishes its "glial" features from tissue-resident macrophages resides in the fact that once entering the CNS, it is perennially exposed to a unique environment following the formation of the blood-brain barrier. Additionally, tissue-resident macrophage progenies derive from various peripheral sites that exhibit hematopoietic potential, and this has resulted in interpretation issues surrounding their origin. Intensive research endeavors have intended to track microglial progenitors during development and disease. The current review provides a corpus of recent evidence in an attempt to disentangle the birthplace of microglia from the progenitor state and underlies the molecular elements that drive microgliogenesis. Furthermore, it caters towards tracking the lineage spatiotemporally during embryonic development and outlining microglial repopulation in the mature CNS. This collection of data can potentially shed light on the therapeutic potential of microglia for CNS perturbations across various levels of severity.
Insights
Microglia, the brain's immune cells, originate from specific progenitors. This review details their birthplace, development, and repopulation, offering insights into potential CNS therapies.
Area of Science:
- Neuroscience
- Immunology
- Developmental Biology
Background:
- Microglia are primary innate immune cells in the central nervous system (CNS).
- They play crucial roles in brain homeostasis and disease.
- Their unique origin and identity are distinct from other tissue-resident macrophages.
Purpose of the Study:
- To review recent evidence on microglial progenitor origins.
- To identify molecular drivers of microgliogenesis.
- To track microglial lineage during development and repopulation in the mature CNS.
Main Methods:
- Literature review of recent research.
- Analysis of studies tracking microglial progenitors.
- Examination of molecular mechanisms in microgliogenesis.
Main Results:
- Evidence disentangling microglial birthplace and progenitor state.
- Identification of molecular elements driving microglial development.
- Spatiotemporal lineage tracking during embryonic development and adult repopulation.
Conclusions:
- Understanding microglial origins is key to their function.
- This knowledge can inform therapeutic strategies for CNS disorders.
- Further research can leverage microglial potential for treating neurological conditions.
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