Changes in Spleen Size in Patients with Acute Ischemic Stroke: A Pilot Observational Study

医学 脾脏 冲程(发动机) 观察研究 白细胞 缺血性中风 内科学 心脏病学 脑缺血 缺血 工程类 机械工程
作者
Preeti Sahota,Farhaan Vahidy,Claude Nguyen,Thanh‐Tung Bui,Bing Yang,Kaushik Parsha,Jennifer Garrett,Arvind Bambhroliya,Andrew D. Barreto,James C. Grotta,Jaroslaw Aronowski,Mohammad H. Rahbar,Sean I. Savitz
出处
期刊:International Journal of Stroke [SAGE Publishing]
卷期号:8 (2): 60-67 被引量:92
标识
DOI:10.1111/ijs.12022
摘要

BACKGROUND: In animal models, the spleen contracts after acute ischemic stroke, followed by release of inflammatory cells leading to secondary brain injury. AIMS: We aim to characterize splenic responses in patients with acute ischemic stroke. METHODS: In this prospective observational study, we measured daily spleen sizes with abdominal ultrasound in 30 patients with suspected acute ischemic stroke. Splenic ultrasounds were also performed in 20 healthy individuals. RESULTS: A generalized estimating equation, longitudinal regression model for adjusted spleen measurements showed the difference between baseline spleen volume (within six-hours of stroke onset) and the volume at the last measured time point (up to seven-days) to be statistically significant (volume difference of 51·9 cm(3) , P = 0·04). Healthy controls had significantly smaller day-to-day variations; the maximum observed difference in mean spleen volume between any two time points was 9·5 cm(3) , with the average change over the period of observation being 1·24 cm(3) . A statistically significant negative association was also observed between the pattern of change of total white blood cell count and spleen volume (P = 0·01). An analysis of individual cases demonstrated possible associations between daily spleen volume changes and clinical course. CONCLUSIONS: We hypothesize that the spleen may initially contract after ischemic stroke followed by a re-expansion and that it contributes to ischemic brain injury mediated via cellular components. Characterization of the splenic response after stroke and its contribution to cerebral ischemic injury has the potential to provide new opportunities for the development of novel stroke therapies.
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