Microglia and inflammation: Impact on developmental brain injuries
- 1 January 2006
- journal article
- review article
- Published by Wiley in Mental Retardation and Developmental Disabilities Research Reviews
- Vol. 12 (2) , 105-112
- https://doi.org/10.1002/mrdd.20102
Abstract
Inflammation during the perinatal period has become a recognized risk factor for developmental brain injuries over the past decade or more. To fully understand the relationship between inflammation and brain development, a comprehensive knowledge about the immune system within the brain is essential. Microglia are resident immune cells within the central nervous system and play a critical role in the development of an inflammatory response within the brain. Microglia are critically involved with both the innate and adaptive immune system, regulating inflammation and cell damage within the brain via activation of Toll‐like receptors, production of cytokines, and a myriad of other intracellular and intercellular processes. In this article, microglial physiology is reviewed along with the role of microglia in developmental brain injuries in humans and animal models. Last, microglial functions within the innate and adaptive immune system will be summarized. Understanding the processes of inflammation and microglial activation is critical for formulating effective preventative and therapeutic strategies for developmental brain injuries. MRDD Research Reviews 2006;12:105–112.Keywords
This publication has 155 references indexed in Scilit:
- Transcriptional response of human microglial cells to interferon-γGenes & Immunity, 2005
- Distinct signaling pathways for induction of type II NOS by IFNγ and LPS in BV-2 microglial cellsNeurochemistry International, 2005
- Interferon‐γ inhibits cell cycle exit in differentiating oligodendrocyte progenitor cellsGlia, 2005
- Effects of lipopolysaccharide on oligodendrocyte progenitor cells are mediated by astrocytes and microgliaJournal of Neuroscience Research, 2000
- Production of macrophage inflammatory protein-2 following hypoxia/reoxygenation in glial cellsGlia, 2000
- Coexistence of purino‐ and pyrimidinoceptors on activated rat microglial cellsBritish Journal of Pharmacology, 1997
- RAGE and amyloid-β peptide neurotoxicity in Alzheimer's diseaseNature, 1996
- Immunohistochemical expression of tumor necrosis factor α in neonatal leukomalaciaPediatric Neurology, 1996
- Production of Interleukin-10 by Mouse Glial Cells in CultureBiochemical and Biophysical Research Communications, 1994
- Lectin binding by resting and reactive microgliaJournal of Neurocytology, 1987