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Generation of an Immortalized Murine Brain Microvascular Endothelial Cell Line as an In Vitro Blood Brain Barrier Model
Published on: August 29, 2012
Soluble VCAM-1 impairs human brain endothelial barrier integrity via integrin α-4-transduced outside-in signalling
Axel Haarmann1, Eva Nowak, Annika Deiß
1Department of Neurology, University of Würzburg, Josef-Schneider-Str. 11, 97080, Würzburg, Germany, haarmann_a@ukw.de.
Abstract:
Human brain microvascular endothelial cells forming the blood-brain barrier (BBB) release soluble vascular cell adhesion molecule-1 (sVCAM-1) under inflammatory conditions. Furthermore, sVCAM-1 serum levels in untreated patients with multiple sclerosis (MS) correlate with a breakdown of the BBB as measured by gadolinium-enhanced MRI. To date, it is unknown whether sVCAM-1 itself modulates BBB permeability. Here, we provide evidence that human brain endothelium expresses integrin α-4/β-1, the molecular binding partner of sVCAM-1, and that sVCAM-1 directly impairs BBB function by inducing intracellular signalling events through integrin α-4. Primary human brain microvascular endothelial cells showed low to moderate integrin α-4 and strong β-1 but no definite β-7 expression in vitro and in situ. Increased brain endothelial integrin α-4 expression was observed in active MS lesions in situ and after angiogenic stimulation in vitro. Exposure of cultured primary brain endothelial cells to recombinant sVCAM-1 significantly increased their permeability to the soluble tracer dextran, which was paralleled by formation of actin stress fibres and reduced staining of tight junction-associated molecules. Soluble VCAM-1 was also found to activate Rho GTPase and p38 MAP kinase. Chemical inhibition of these signalling pathways partially prevented sVCAM-1-induced changes of tight junction arrangement. Importantly, natalizumab, a neutralising recombinant monoclonal antibody against integrin α-4 approved for the treatment of patients with relapsing-remitting MS, partially antagonised the barrier-disturbing effect of sVCAM-1. In summary, we newly characterised sVCAM-1 as a compromising factor of brain endothelial barrier function that may be partially blocked by the MS therapeutic natalizumab.
Insights
Soluble VCAM-1 (sVCAM-1) worsens blood-brain barrier (BBB) permeability in multiple sclerosis (MS) by activating brain endothelial cells. The MS drug natalizumab partially blocks this effect, suggesting a new therapeutic target for BBB repair.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Human brain microvascular endothelial cells form the blood-brain barrier (BBB).
- These cells release soluble vascular cell adhesion molecule-1 (sVCAM-1) during inflammation.
- Elevated sVCAM-1 serum levels in multiple sclerosis (MS) patients correlate with BBB breakdown.
Purpose of the Study:
- To investigate whether sVCAM-1 directly impacts BBB permeability.
- To identify the molecular mechanisms by which sVCAM-1 affects the BBB.
- To assess the potential of natalizumab in mitigating sVCAM-1-induced BBB dysfunction.
Main Methods:
- Assessed integrin α-4/β-1 expression in human brain endothelial cells (in vitro and in situ).
- Examined sVCAM-1 effects on endothelial cell permeability, tight junction integrity, and signaling pathways (Rho GTPase, p38 MAP kinase).
- Evaluated natalizumab's efficacy in antagonizing sVCAM-1-induced BBB changes.
Main Results:
- Human brain endothelium expresses integrin α-4/β-1, the binding partner for sVCAM-1.
- sVCAM-1 exposure increased endothelial permeability, disrupted tight junctions, and activated Rho GTPase and p38 MAP kinase.
- Increased integrin α-4 expression was noted in active MS lesions and after angiogenic stimulation.
- Natalizumab partially counteracted the barrier-disrupting effects of sVCAM-1.
Conclusions:
- sVCAM-1 directly compromises brain endothelial barrier function.
- Integrin α-4 signaling mediates sVCAM-1's detrimental effects on the BBB.
- Natalizumab shows potential in partially blocking sVCAM-1-induced BBB dysfunction, offering therapeutic insights for MS.
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