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Hypoxia induces nitric oxide production in mouse microglia via p38 mitogen-activated protein kinase pathway
Sun Young Park1, Heasuk Lee, Jinyoung Hur
1Department of Anatomy and Neurobiology, College of Medicine, Gyeongsang National University, 92 Chilam-dong, Jinju, Kyungnam 660-751, South Korea.
Abstract:
In vitro exposure of microglial cells to hypoxia induces cellular activation. Also, in vivo studies of glial activation following ischemic hypoxia have shown that neuronal cell death is followed by microglial activation. Thus, it is likely that toxic inflammatory mediators produced by activated microglial cells under hypoxic conditions may exacerbate neuronal injury following cerebral ischemia. Nitric oxide (NO), which is known to be produced by activated microglia, may participate in this process. In the current work, we sought to determine whether and how the production of NO and the expression of inducible NO synthase (iNOS) are triggered by hypoxia in microglial cells. Exposure of established microglial cell lines as well as primary mouse microglial cultures to mild hypoxia (8 h) followed by reoxygenation (24 h) induced the production of NO and TNFalpha, indicating that hypoxia could lead to the inflammatory activation of microglia. Hypoxic induction of NO was accompanied by iNOS induction. Moreover, hypoxia induced the activation of p38 MAPK, but not ERK or JNK/SAPK, in BV-2 mouse microglial cells. SB203580, a specific inhibitor of p38 MAPK, blocked the hypoxic induction of NO and iNOS. Taken together, our results indicated that hypoxia could induce inflammatory activation of microglia, and the hypoxic induction of NO production in microglia is mediated through p38 MAPK pathway. Thus, during cerebral ischemia, hypoxia may not only directly damage neurons, but may also promote neuronal injury indirectly via microglial activation.
Insights
Hypoxia activates microglia, leading to nitric oxide (NO) production via the p38 MAPK pathway. This microglial activation may worsen brain injury during cerebral ischemia.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglial cells are key immune cells in the brain.
- Hypoxia, or oxygen deprivation, can activate microglia.
- Activated microglia may release inflammatory mediators that harm neurons.
Purpose of the Study:
- To investigate if hypoxia triggers nitric oxide (NO) production in microglial cells.
- To determine the signaling pathway involved in hypoxia-induced NO production.
- To understand the role of microglia in neuronal injury during cerebral ischemia.
Main Methods:
- Exposed microglial cell lines and primary cultures to hypoxia and reoxygenation.
- Measured NO and TNF-alpha production.
- Assessed inducible NO synthase (iNOS) expression.
- Analyzed mitogen-activated protein kinase (MAPK) pathway activation (p38, ERK, JNK/SAPK).
- Used a p38 MAPK inhibitor (SB203580) to block NO and iNOS induction.
Main Results:
- Hypoxia induced NO and TNF-alpha production in microglia.
- Hypoxia led to increased iNOS expression.
- Hypoxia activated the p38 MAPK pathway, but not ERK or JNK/SAPK.
- Inhibiting p38 MAPK blocked hypoxia-induced NO and iNOS production.
Conclusions:
- Hypoxia induces inflammatory activation of microglia.
- Hypoxia-induced NO production in microglia is mediated by the p38 MAPK pathway.
- Activated microglia under hypoxic conditions may contribute to neuronal injury during cerebral ischemia.