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Updated: Aug 6, 2025

An In Vivo Assessment of Blood-Brain Barrier Disruption in a Rat Model of Ischemic Stroke
Published on: March 11, 2018
The evolution of blood-brain barrier permeability changes after stroke and its implications on clinical outcome: A
Sara Bernardo-Castro1,2, João André Sousa1, Emanuel Martins1
1Department of Neurology, Centro Hospitalar e Universitário de Coimbra, Coimbra, Portugal.
Background:
Blood-brain barrier permeability (BBBp) is a key process involved in ischemic stroke pathophysiology. However, there is a lack of consensus on how BBBp evolves after the ischemia injury, and its clinical relevance at different timepoints post stroke.
Aims:
The main objective of this study is to assess BBBp evolution through stroke phases and its implications on patient outcomes.
Methods:
We screened PubMed/MEDLINE, Embase, Web of Science, Scopus, and Cochrane Central Register of Controlled Trials up to 31 December 2021. We included research quantitatively using neuroimaging to assess BBBp in stroke patients. BBBp in the different phases was evaluated by a random-effect model based on the standardized mean difference (SMD) between the ipsilateral and contralateral sides of the brain. We performed a subgroup analysis on clinical outcome, reperfusion treatment, haemorrhagic transformation, and imaging method.
Results:
We identified 3761 studies, of which 22 (1592 patients and 1787 evaluations) were included in our study. Overall, 17 studies reported BBBp for the hyperacute phase, 8 for the acute, 5 for the subacute, and 2 for the chronic phase. All phases were associated with increased BBBp: 0.74 (0.48-0.99), 1.68 (0.94-2.42), 1.98 (0.96-3.00), and 1.00 (0.45-1.55), respectively. An increase in BBBp was associated with hemorrhagic transformation in the hyperacute phase and with improved functional outcomes in the late subacute phase.
Conclusion:
BBBp is persistently increased after stroke, peaking in the acute and subacute phases. The degree of BBBp influences patient outcomes depending on stroke phase. Our findings support the clinical relevance of BBBp dynamics in stroke care.
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