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  3. VLA-4 mediated adhesion of melanoma cells on the blood-brain barrier is the critical cue for melanoma cell intercalation and barrier disruption.
 

VLA-4 mediated adhesion of melanoma cells on the blood-brain barrier is the critical cue for melanoma cell intercalation and barrier disruption.

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Publisher DOI
10.1177/0271678X18775887
PubMed ID
29762071
Description
Melanoma is the most aggressive skin cancer in humans. One severe complication is the formation of brain metastasis, which requires extravasation of melanoma cells across the tight blood-brain barrier (BBB). Previously, VLA-4 has been assigned a role for the adhesive interaction of melanoma cells with non-BBB endothelial cells. However, the role of melanoma VLA-4 for breaching the BBB remained unknown. In this study, we used a mouse in vitro BBB model and imaged the shear resistant arrest of melanoma cells on the BBB. Similar to effector T cells, inflammatory conditions of the BBB increased the arrest of melanoma cells followed by a unique post-arrest behavior lacking immediate crawling. However, over time, melanoma cells intercalated into the BBB and compromised its barrier properties. Most importantly, antibody ablation of VLA-4 abrogated melanoma shear resistant arrest on and intercalation into the BBB and protected the BBB from barrier breakdown. A tissue microarray established from human brain metastasis revealed that indeed a majority of 92% of all human melanoma brain metastases stained VLA-4 positive. We propose VLA-4 as a target for the inhibition of brain metastasis formation in the context of personalized medicine identifying metastasizing VLA-4 positive melanoma.
Date of Publication
2018-05-15
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
500 Science > 570 Life sciences; biology
Keyword(s)
BBB leakage Blood–brain barrier in vitro live cell imaging melanoma brain metastasis tissue microarray very late antigen-4
Language(s)
en
Contributor(s)
García Martín, Ana Belénorcid-logo
Theodor-Kocher-Institut (TKI)
Zwicky, Pascale
Gruber, Thomas
Matti, Christoph
Moalli, Federica
Theodor-Kocher-Institut (TKI)
Stein, Jens Volker
Theodor-Kocher-Institut (TKI)
Francisco, David
Enzmann, Gaby
Theodor-Kocher-Institut (TKI)
Levesque, Mitchell P
Hewer, Ekkehard Walterorcid-logo
Institut für Pathologie
Lyck, Ruthorcid-logo
Theodor-Kocher-Institut (TKI)
Additional Credits
Theodor-Kocher-Institut (TKI)
Institut für Pathologie
Series
Journal of cerebral blood flow and metabolism
Publisher
Sage
ISSN
0271-678X
Access(Rights)
metadata.only
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