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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Sevoflurane Post-Conditioning Ameliorates Neuronal Deficits and Axon Demyelination After Neonatal Hypoxic Ischemic
Hang Xue1, Ya-Han Zhang1, Qiu-Shi Gao1
1Department of Anesthesiology, Shengjing Hospital, China Medical University, 36 Sanhao Street, Shenyang, 110004, China.
Abstract:
Microglia/macrophages have been identified to be highly polarized after ischemia. Interestingly, the polarization of these microglia/macrophages varies immensely under differing disease conditions. Post-conditioning using sevoflurane, a volatile anesthetic, could provide long-term neuroprotection to neonatal rats after hypoxic-ischemic brain injury (HIBI). Thus, the current study aimed at investigating the effects of sevoflurane post-conditioning (SPC) on microglia/macrophage polarization after HIBI induction in neonatal rats. Additionally, we aimed at identifying the underpinning mechanisms specifically related to autophagy and lysosomal protease enzyme, cathepsin B. To develop a HIBI model, 7-day-old Sprague-Dawley rats underwent left common carotid artery ligation followed by 2 h of hypoxia. The role of microglia/macrophages in the neuroprotection conferred by SPC was examined by left-side intra-cerebroventricular injection with adenovirus vector carrying catB-GFP or rapamycin. The number of interleukin (IL)-1β+ cells, cathepsin B+ cells, light chain 3B positive (LC3B+) cells among ionized calcium binding adaptor molecule 1(Iba1+)cells to investigate microglia polarization, neuronal apoptosis to assess neuronal death in the acute phase were tested at 24 h after HIBI. Behavioral tests including suspension test, Morris water maze tests were performed to investigate the long-term effects of SPC, at 21 to 34 days post HIBI. Nissl staining and myelin basic protein (MBP) immunostaining to assess the long-term neuronal and myelin damage were performed at 34 days after HIBI. Based on the obtained results post HIBI, we observed the cells that were positive for IL-1β, cathepsin B, and LC3B among Iba1 positive cell population in the hippocampus were significantly decreased after SPC treatment. SPC significantly attenuated the HIBI-induced increase in neuronal apoptosis, improved long-term cognitive function, and attenuated HI-induced decrease of Nissl-positive cells and MBP expression. However, these trends were reversed by injection of adenovirus vector carrying catB-GFP and rapamycin. SPC attenuated microglia polarization towards neurotoxic phenotypes, alleviates neuronal death and axon demyelination after HIBI in neonatal rats by regulating microglia autophagy and cathepsin B expression, and therefore provided long-term cognitive, learning and memory protection.
Insights
Sevoflurane post-conditioning (SPC) reduces harmful microglia/macrophage polarization and neuroinflammation after neonatal hypoxic-ischemic brain injury (HIBI). This neuroprotection is mediated by regulating autophagy and cathepsin B, improving long-term cognitive function.
Area of Science:
- Neuroscience
- Immunology
- Anesthesiology
Background:
- Microglia/macrophages exhibit polarized responses following ischemia, varying with disease conditions.
- Sevoflurane post-conditioning (SPC) offers potential long-term neuroprotection against hypoxic-ischemic brain injury (HIBI).
Purpose of the Study:
- To investigate SPC's effects on microglia/macrophage polarization post-HIBI in neonatal rats.
- To identify the roles of autophagy and cathepsin B in SPC-mediated neuroprotection.
Main Methods:
- Neonatal rats underwent HIBI induction; SPC was administered.
- Microglia polarization (IL-1β, cathepsin B, LC3B), neuronal apoptosis, and long-term cognitive function were assessed.
- Adenovirus vectors (catB-GFP, rapamycin) were used to explore underlying mechanisms.
Main Results:
- SPC significantly decreased pro-inflammatory microglia markers (IL-1β, cathepsin B) and increased autophagy markers (LC3B) post-HIBI.
- SPC attenuated neuronal apoptosis, improved cognitive function, and preserved neuronal/myelin integrity.
- Intervention with catB-GFP or rapamycin reversed SPC's protective effects.
Conclusions:
- SPC attenuates detrimental microglia polarization and neuroinflammation following HIBI in neonatal rats.
- The neuroprotective effects of SPC are linked to the regulation of microglia autophagy and cathepsin B expression.
- SPC provides sustained cognitive, learning, and memory benefits after neonatal HIBI.
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