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Matrix Metalloproteinase-Mediated Disruption of Tight Junction Proteins in Cerebral Vessels is Reversed by Synthetic Matrix Metalloproteinase Inhibitor in Focal Ischemia in Rat

Journal of Cerebral Blood Flow & Metabolism · 2006 · Vol. 27(4) · pp. 697–709
Yi YangEduardo Y. EstradaJeffrey F. ThompsonWenlan LiuGary A. Rosenberg

Abstract

Matrix metalloproteinases (MMPs) disrupt the blood-brain barrier (BBB) during reperfusion. Occludin and claudins are recently described tight junction proteins (TJPs) that form the BBB. We hypothesized that the opening of the BBB was because of the degradation of TJPs by the MMPs. Spontaneously hypertensive rats had a 90 mins middle cerebral artery occlusion with reperfusion for 2, 3, or 24 h. Matrix metalloproteinases were measured by immunohistochemistry and in situ and gel zymography. Real-time polymerase chain reaction (PCR) measured mRNAs of MMP-2 and -9, furin, membrane-type MMP (MT1-MMP), occludin, and claudin-5. There was opening of the BBB in the piriform cortex after 3 h of reperfusion, and an MMP inhibitor, BB-1101 (30 mg/kg), prevented the opening. At 3 h, in situ zymograms showed gelatinase activity. Zymography and PCR showed greater increases in MMP-2 than in MMP-9. There were increased mRNA and immunohistochemistry for MT1-MMP and furin, which activate MMP-2. Claudin-5 and occludin mRNA expression decreased at 2 h in both hemispheres with fragments of both proteins seen on Western blot by 3 h on the ischemic side; treatment with BB-1101 reversed the degradation of the TJPs. Immunohistochemistry at 3 h showed fragmented TJPs within the endothelial cell clefts. By 24 h, in situ zymography showed gelatinase activity and gel zymography showed elevated levels of MMP-9. Disrupted TJPs previously seen in endothelial cells appeared in the surrounding astrocytes. Our results provide direct evidence that MMPs open the BBB by degrading TJPs and that an MMP inhibitor prevents degradation of the TJPs by MMPs.

Barrier Structure and Function StudiesAcute Ischemic Stroke ManagementNeurological Disease Mechanisms and TreatmentsOccludinZymographyMatrix metalloproteinaseGelatinaseTight junctionBlood–brain barrierWestern blotClaudinChemistryIn situ hybridization

MeSH terms

AnimalsAstrocytesBlood-Brain BarrierCerebral ArteriesBrain IschemiaCerebral VeinsEvans BlueImmunohistochemistryMaleMembrane ProteinsNerve Tissue ProteinsProtease InhibitorsRats, Inbred SHRRNA, MessengerSucrose

Funding

  • National Institutes of Health
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References
Multifunctional strands in tight junctions
Nature Reviews Molecular Cell Biology · 2001 · 2,465 citations
Matrix Metalloproteinases Increase Very Early during Experimental Focal Cerebral Ischemia
Journal of Cerebral Blood Flow & Metabolism · 1999 · 551 citations
Occludin: a novel integral membrane protein localizing at tight junctions.
The Journal of Cell Biology · 1993 · 2,521 citations
Size-selective loosening of the blood-brain barrier in claudin-5–deficient mice
The Journal of Cell Biology · 2003 · 1,880 citations
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Matrix Metalloproteinase-Mediated Disruption of Tight Junction Proteins in Cerebral Vessels is Reversed by Synthetic Matrix Metalloproteinase Inhibitor in Focal Ischemia in Rat · Scinovex