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Blood-brain barrier disruption in humans is independently associated with increased matrix metalloproteinase-9
Taura L Barr1, Lawrence L Latour, Kyung-Yul Lee
1National Institute of Nursing Research, Bethesda, Md, USA. barrt@mail.nih.gov
Background And Purpose:
Matrix metalloproteinases (MMP) may play a role in blood-brain barrier (BBB) disruption after ischemic stroke. We hypothesized that plasma concentrations of MMP-9 are associated with a marker of BBB disruption in patients evaluated for acute stroke.
Methods:
Patients underwent MRI on presentation and approximately 24 hours later. The MRI marker, termed hyperintense acute reperfusion injury marker (HARM), is gadolinium enhancement of cerebrospinal fluid on fluid-attenuated inversion recovery MRI. Plasma MMP-9 and tissue inhibitor of matrix metalloproteinase-1 were measured by enzyme-linked immunosorbent assay. Logistic regression models tested for predictors of HARM on 24-hour follow-up scans separately for MMP-9 and the ratio of MMP-9 to TIMP-1.
Results:
For the 41 patients enrolled, diagnoses were: acute ischemic cerebrovascular syndrome, 33 (80.6%); intracerebral hemorrhage, 6 (14.6%); stroke mimic, 1 (2.4%); and no stroke, 1 (2.4%). HARM was present in 17 (41.5%) patients. In model 1, HARM was associated with baseline plasma MMP-9 concentration (odds ratio [OR], 1.01; 95% confidence interval [CI], 1.001-1.019; P=0.033). In model 2, HARM was associated with the ratio of MMP-9 to tissue inhibitor of matrix metalloproteinase-1 (OR, 4.94; 95% CI, 1.27-19.14; P=0.021).
Conclusions:
Baseline MMP-9 was a significant predictor of HARM at 24-hour follow-up, supporting the hypothesis that MMP-9 is associated with BBB disruption. If the association between MMP-9 and BBB disruption is confirmed in future studies, HARM may be a useful imaging marker to evaluate MMP-9 inhibition in ischemic stroke and other populations with BBB disruption.
Insights
Plasma matrix metalloproteinase-9 (MMP-9) levels predict blood-brain barrier disruption in acute stroke patients. This finding supports MMP-9 as a target for stroke therapies and hyperintense acute reperfusion injury marker (HARM) as a potential imaging biomarker.
Area of Science:
- Neuroscience
- Biochemistry
- Radiology
Background:
- Matrix metalloproteinases (MMP) are implicated in blood-brain barrier (BBB) disruption following ischemic stroke.
- Investigating MMPs' role in BBB integrity is crucial for understanding stroke pathophysiology.
Purpose of the Study:
- To test the hypothesis that plasma MMP-9 concentrations correlate with BBB disruption markers in acute stroke patients.
- To evaluate MMP-9 and its inhibitor TIMP-1 as predictors of BBB damage.
Main Methods:
- 41 patients with acute stroke underwent MRI at baseline and 24 hours.
- Hyperintense acute reperfusion injury marker (HARM), indicating BBB disruption, was assessed via MRI.
- Plasma MMP-9 and tissue inhibitor of matrix metalloproteinase-1 (TIMP-1) levels were quantified using ELISA.
- Logistic regression analyzed predictors of HARM, including MMP-9 and the MMP-9/TIMP-1 ratio.
Main Results:
- HARM was detected in 41.5% of patients.
- Elevated baseline plasma MMP-9 concentration significantly predicted HARM at 24-hour follow-up (OR, 1.01; P=0.033).
- The ratio of MMP-9 to TIMP-1 also significantly predicted HARM (OR, 4.94; P=0.021).
Conclusions:
- Baseline MMP-9 levels are a significant predictor of BBB disruption (HARM) in acute stroke patients.
- These findings support MMP-9's association with BBB disruption and suggest HARM as a potential imaging biomarker.
- Further research may validate HARM for assessing MMP-9 inhibition strategies in stroke and other conditions with BBB disruption.
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