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Stroke Severity, and Not Cerebral Infarct Location, Increases the Risk of Infection
Raymond Shim1, Shu Wen Wen1, Brooke J Wanrooy1
1Centre for Inflammatory Diseases, Department of Medicine at Monash Health, School of Clinical Sciences, Monash Medical Centre, Monash University, Clayton, VIC, 3168, Australia.
Abstract:
Infection is a leading cause of death in patients with stroke; however, the impact of cerebral infarct size or location on infectious outcome is unclear. To examine the effect of infarct size on post-stroke infection, we utilised the intraluminal middle-cerebral artery occlusion (MCAO) mouse model of ischemic stroke and adjusted the duration of arterial occlusion. At 1 day following stroke onset, the proportion of mice with infection was significantly greater in mice that had larger infarct sizes. Additionally, the presence of lung infection in these mice with severe strokes extended past 2 days, suggestive of long-term immune impairment. At the acute phase, our data demonstrated an inverse relationship between infarct volume and the number of circulating leukocytes, indicating the elevated risk of infection in more severe stroke is associated with reduced cellularity in peripheral blood, owing predominately to markedly decreased lymphocyte numbers. In addition, the stroke-induced reduction of lymphocyte-to-neutrophil ratio was also evident in the lung of all post-stroke animals. To investigate the effect of infarct location on post-stroke infection, we additionally performed a photothrombotic (PT) model of stroke and using an innovative systematic approach of analysis, we found the location of cerebral infarct does not impact on the susceptibility of post-stroke infection, confirming the greater role of infarct volume over infarct location in the susceptibility to infection. Our experimental findings were validated in a clinical setting and reinforced that stroke severity, and not infarct location, influences the risk of infection after stroke.
Insights
Stroke severity, not location, increases infection risk. Larger infarcts lead to more infections and impaired immunity, linked to lower white blood cell counts.
Area of Science:
- Neuroscience
- Immunology
- Infectious Diseases
Background:
- Infection is a major cause of death in stroke patients.
- The influence of infarct size and location on post-stroke infection remains unclear.
Purpose of the Study:
- To investigate the impact of cerebral infarct size and location on post-stroke infection susceptibility.
- To determine if infarct volume or location is a greater risk factor for infection after stroke.
Main Methods:
- Utilized the middle cerebral artery occlusion (MCAO) mouse model to study infarct size effects.
- Employed a photothrombotic (PT) stroke model to analyze infarct location impact.
- Validated experimental findings in a clinical setting.
Main Results:
- Larger infarct volumes were significantly associated with a higher proportion of infections post-stroke.
- Severe strokes led to prolonged lung infections and suggested long-term immune impairment.
- An inverse relationship was observed between infarct volume and circulating leukocytes, primarily due to decreased lymphocytes.
- Infarct location did not significantly impact post-stroke infection susceptibility.
Conclusions:
- Stroke severity, indicated by infarct volume, is a critical determinant of post-stroke infection risk.
- Infarct location does not influence susceptibility to infection.
- Findings highlight the importance of considering stroke severity in managing infection risk in patients.
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