Literature DB >> 17600121

Population control of resident and immigrant microglia by mitosis and apoptosis.

Martin Wirenfeldt1, Lasse Dissing-Olesen, Alicia Anne Babcock, Marianne Nielsen, Michael Meldgaard, Jens Zimmer, Iñigo Azcoitia, Robert Graham Quinton Leslie, Frederik Dagnaes-Hansen, Bente Finsen.   

Abstract

Microglial population expansion occurs in response to neural damage via processes that involve mitosis and immigration of bone marrow-derived cells. However, little is known of the mechanisms that regulate clearance of reactive microglia, when microgliosis diminishes days to weeks later. We have investigated the mechanisms of microglial population control in a well-defined model of reactive microgliosis in the mouse dentate gyrus after perforant pathway axonal lesion. Unbiased stereological methods and flow cytometry demonstrate significant lesion-induced increases in microglial numbers. Reactive microglia often occurred in clusters, some having recently incorporated bromodeoxyuridine, showing that proliferation had occurred. Annexin V labeling and staining for activated caspase-3 and terminal deoxynucleotidyl transferase-mediated dUTP nick end-labeling showed that apoptotic mechanisms participate in dissolution of the microglial response. Using bone marrow chimeric mice, we found that the lesion-induced proliferative capacity of resident microglia superseded that of immigrant microglia, whereas lesion-induced kinetics of apoptosis were comparable. Microglial numbers and responses were severely reduced in bone marrow chimeric mice. These results broaden our understanding of the microglial response to neural damage by demonstrating that simultaneously occurring mitosis and apoptosis regulate expansion and reduction of both resident and immigrant microglial cell populations.

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Year:  2007        PMID: 17600121      PMCID: PMC1934543          DOI: 10.2353/ajpath.2007.061044

Source DB:  PubMed          Journal:  Am J Pathol        ISSN: 0002-9440            Impact factor:   4.307


  51 in total

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7.  Proliferating resident microglia express the stem cell antigen CD34 in response to acute neural injury.

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9.  Toll-like receptor 2 signaling in response to brain injury: an innate bridge to neuroinflammation.

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5.  Immunohistochemical markers for quantitative studies of neurons and glia in human neocortex.

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6.  Rapid light-induced activation of retinal microglia in mice lacking Arrestin-1.

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8.  Toll-like receptor 2 ligands promote microglial cell death by inducing autophagy.

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9.  Nuclear translocation of endonuclease G in degenerating neurons after permanent middle cerebral artery occlusion in mice.

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Review 10.  Microglia development and function.

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