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Isolation and Flow Cytometric Analysis of Immune Cells from the Ischemic Mouse Brain
Published on: February 12, 2016
Age-related differences in interferon regulatory factor-4 and -5 signaling in ischemic brains of mice
Shou-Cai Zhao1,2, Chun Wang3, Heng Xu2
1Department of Neurology, Nanjing First Hospital, Nanjing Medical University, Nanjing 210006, China.
Abstract:
Stroke is a disease that mainly affects the elderly. Since the age-related differences in stroke have not been well studied, modeling stroke in aged animals is clinically more relevant. The inflammatory responses to stroke are a fundamental pathological procedure, in which microglial activation plays an important role. Interferon regulatory factor-5 (IRF5) and IRF4 regulate M1 and M2 activation of macrophages, respectively, in peripheral inflammation; but it is unknown whether IRF5/IRF4 are also involved in cerebral inflammatory responses to stroke and whether age-related differences of the IRF5/IRF4 signaling exist in ischemic brain. Here, we investigated the influences of aging on IRF5/IRF4 signaling and post-stroke inflammation in mice. Both young (9-12 weeks) and aged (18 months) male mice were subjected to middle cerebral artery occlusion (MCAO). Morphological and biochemical changes in the ischemic brains and behavior deficits were assessed on 1, 3, and 7 d post-stroke. After MCAO, the aged mice showed smaller infarct sizes but higher neurological deficits and corner test scores than young mice. Young mice had higher levels of IRF4 and CD206 microglia in the ischemic brains, whereas the aged mice expressed more IRF5 and MHCII microglia. After MCAO, serum pro-inflammatory cytokines (TNF-α, iNOS, IL-6) were more prominently up-regulated in aged mice, whereas serum anti-inflammatory cytokines (TGF-β, IL-4, IL-10) were more prominently up-regulated in young mice. Our results demonstrate that aging has a significant influence on stroke outcomes in mice, which is probably mediated by age-specific inflammatory responses.
Insights
Aging significantly impacts stroke outcomes in mice, altering inflammatory responses. Aged mice showed worse neurological deficits despite smaller infarcts, with distinct microglial activation patterns compared to young mice.
Area of Science:
- Neuroscience
- Immunology
- Gerontology
Background:
- Stroke predominantly affects the elderly, yet age-related stroke differences are understudied.
- Microglial activation is crucial in stroke's inflammatory response.
- Interferon regulatory factors (IRFs) like IRF5 and IRF4 modulate macrophage polarization in peripheral inflammation.
Purpose of the Study:
- To investigate the influence of aging on IRF5/IRF4 signaling in the ischemic brain.
- To explore age-related differences in post-stroke inflammation and outcomes.
- To determine if IRF5/IRF4 signaling is involved in cerebral inflammatory responses to stroke.
Main Methods:
- Middle cerebral artery occlusion (MCAO) model in young (9-12 weeks) and aged (18 months) male mice.
- Assessment of morphological, biochemical, and behavioral changes at 1, 3, and 7 days post-stroke.
- Analysis of microglial activation markers (IRF4, CD206, IRF5, MHCII) and serum cytokine levels.
Main Results:
- Aged mice exhibited smaller infarct volumes but worse neurological deficits and behavioral scores post-MCAO.
- Young mice showed higher levels of IRF4 and CD206+ microglia, indicative of M2 polarization.
- Aged mice displayed increased IRF5 and MHCII+ microglia (M1 polarization) and elevated pro-inflammatory serum cytokines (TNF-α, iNOS, IL-6).
Conclusions:
- Aging significantly influences stroke outcomes in mice.
- Age-specific inflammatory responses, involving differential IRF5/IRF4 signaling and microglial polarization, likely mediate these stroke outcome differences.
- Understanding these age-related inflammatory mechanisms is critical for developing targeted stroke therapies.

