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Electromagnetic Controlled Closed-Head Model of Mild Traumatic Brain Injury in Mice
Published on: September 28, 2022
AIM2 inflammasome contributes to brain injury and chronic post-stroke cognitive impairment in mice
Hyunha Kim1, Ji Seon Seo1, Seo-Yeon Lee2
1Department of Korean Medical Science, School of Korean Medicine, Pusan National University, Yangsan, Gyeongnam 50612, Republic of Korea; Korean Medical Science Research Center for Healthy-Aging, Pusan National University, Yangsan, Gyeongnam 50612, Republic of Korea; Graduate Training Program of Korean Medicine for Healthy-Aging, Pusan National University, Yangsan, Gyeongnam 50612, Republic of Korea.
Abstract:
Although over one-third of stroke patients may develop post-stroke cognitive impairment (PSCI), the mechanisms underlying PSCI remain unclear. We explored here, the involvement of post-stroke inflammasomes in long-term PSCI development, using a 45 min-middle cerebral artery occlusion (MCAO)/reperfusion-induced PSCI model. Immunohistological assessment on day 1, 3, and 7 was followed by cognitive function test 28 days post-stroke. Evaluation of inflammasome sensor gene expression in aged mouse brains showed dominant expression of absent in melanoma 2 (Aim2) in 6-, 12-, and 18-month-old mouse brains. AIM2 mRNA and protein increased until 7 days post-stroke. PSCI decreased anxiety in elevated plus maze test and impaired spatial learning and memory functions in Morris water maze test 28 days post-stroke. AIM2 and other inflammasome subunit immunoreactivities, including those for caspase-1, interleukin (IL)-1β, and IL-18, were higher in the hippocampus and cortex of the PSCI than in those of the sham group 7 days post-stroke. AIM2 immunoreactivity of the PSCI group was primarily co-localized with Iba-1 (microglial marker) and CD31 (endothelial cell marker) immunoreactivities but not NeuN (neuronal marker) and GFAP (astrocyte marker) immunoreactivities, suggesting that microglia or endothelial cell-induced AIM2 production mediated PSCI pathogenesis. Additionally, inflammasome-induced pyroptosis might contribute to acute and chronic neuronal death after stroke. AIM2 knockout (KO) and Ac-YVAD-CMK-induced caspase-1 inhibition in mice significantly improved cognitive function and reversed brain volume in the hippocampus relative to those in stroke mice. Conclusively, AIM2 inflammasome-mediated inflammation and pyroptosis likely aggravated PSCI; therefore, targeting and controlling AIM2 inflammasome could potentially treat PSCI.
Insights
Post-stroke cognitive impairment (PSCI) mechanisms were explored. Targeting the AIM2 inflammasome pathway, involving microglia and endothelial cells, may offer a novel treatment for PSCI by reducing inflammation and pyroptosis.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Over one-third of stroke patients develop post-stroke cognitive impairment (PSCI).
- The underlying mechanisms of PSCI remain unclear.
- Inflammasomes are implicated in inflammatory responses and cell death.
Purpose of the Study:
- To investigate the role of post-stroke inflammasomes, particularly AIM2 (absent in melanoma 2), in the development of long-term PSCI.
- To explore the cellular sources and downstream effects of AIM2 inflammasome activation after stroke.
Main Methods:
- A middle cerebral artery occlusion (MCAO) and reperfusion model in aged mice to induce stroke and PSCI.
- Immunohistological analysis of inflammasome components (AIM2, caspase-1, IL-1β, IL-18) and cell markers (Iba-1, CD31, NeuN, GFAP) at different time points post-stroke.
- Cognitive function tests (elevated plus maze, Morris water maze) were performed 28 days post-stroke.
- Assessment of AIM2 knockout (KO) and caspase-1 inhibition (Ac-YVAD-CMK) effects on cognitive function and brain volume.
Main Results:
- AIM2 expression was dominant in aged mouse brains and increased post-stroke.
- PSCI mice exhibited impaired cognitive functions (anxiety, spatial learning, memory).
- AIM2 and inflammasome subunits were upregulated in the hippocampus and cortex of PSCI mice, co-localizing with microglial (Iba-1) and endothelial cell (CD31) markers.
- AIM2 knockout and caspase-1 inhibition significantly improved cognitive function and reduced brain damage in stroke mice.
Conclusions:
- AIM2 inflammasome activation, mediated by microglia and endothelial cells, plays a crucial role in aggravating PSCI.
- Inflammasome-induced pyroptosis contributes to neuronal death after stroke.
- Targeting the AIM2 inflammasome pathway presents a potential therapeutic strategy for treating PSCI.

