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  3. Vascular mimicry in zebrafish fin regeneration: how macrophages build new blood vessels.
 

Vascular mimicry in zebrafish fin regeneration: how macrophages build new blood vessels.

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BORIS DOI
10.48350/195297
Publisher DOI
10.1007/s10456-024-09914-y
PubMed ID
38546923
Description
Vascular mimicry has been thoroughly investigated in tumor angiogenesis. In this study, we demonstrate for the first time that a process closely resembling tumor vascular mimicry is present during physiological blood vessel formation in tissue regeneration using the zebrafish fin regeneration assay. At the fin-regenerating front, vasculature is formed by mosaic blood vessels with endothelial-like cells possessing the morphological phenotype of a macrophage and co-expressing both endothelial and macrophage markers within single cells. Our data demonstrate that the vascular segments of the regenerating tissue expand, in part, through the transformation of adjacent macrophages into endothelial-like cells, forming functional, perfused channels and contributing to the de novo formation of microvasculature. Inhibiting the formation of tubular vascular-like structures by CVM-1118 prevents vascular mimicry and network formation resulting in a 70% shorter regeneration area with 60% reduced vessel growth and a complete absence of any signs of regeneration in half of the fin area. Additionally, this is associated with a significant reduction in macrophages. Furthermore, depleting macrophages using macrophage inhibitor PLX-3397, results in impaired tissue regeneration and blood vessel formation, namely a reduction in the regeneration area and vessel network by 75% in comparison to controls.
Date of Publication
2024-08
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
600 Technology > 610 Medicine & health
Keyword(s)
Macrophages Regeneration Vascular mimicry Zebrafish
Language(s)
en
Contributor(s)
Senk, Anita
Institut für Anatomie - Topographische & Klinische Anatomie
Fazzari, Jennifer Michelina
Institut für Anatomie - Topographische & Klinische Anatomie
Institut für Anatomie
Djonov, Valentin Georgievorcid-logo
Institut für Anatomie
Institut für Anatomie - Topographische & Klinische Anatomie
Institut für Anatomie
Additional Credits
Microscopy Imaging Center (MIC)
Institut für Anatomie
Institut für Anatomie - Topographische & Klinische Anatomie
Series
Angiogenesis
Publisher
Springer Netherlands
ISSN
0969-6970
Access(Rights)
open.access
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