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Blood flow-induced Notch activation and endothelial migration enable embryonic vascular remodeling.

Bart Weijts, Edgar Gutierrez, Semion K Saikin, Ararat J Ablooglu, David Traver, Alex Groisman, Eugene Tkachenko
doi: https://doi.org/10.1101/095307
Bart Weijts
University of California San Diego;
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Edgar Gutierrez
University of California San Diego;
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Semion K Saikin
Harvard
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Ararat J Ablooglu
University of California San Diego;
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David Traver
University of California San Diego;
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Alex Groisman
University of California San Diego;
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Eugene Tkachenko
University of California San Diego;
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  • For correspondence: etkachenko@ucsd.edu
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Abstract

Arteries and veins are lined by arterial and venous endothelial cells (ECs), which are functionally different. During embryonic development, vascular remodeling transforms some arteries into veins and because arterial and venous embryonic ECs have the plasticity to transdifferentiate into each other, suggests that the transformation of arteries to veins may be accompanied by trans-differentiation of ECs. Here, we show that transformation of arterial intersegmental vessels (aISVs) into veins occurs without trans-differentiation, by the displacement of arterial ECs by venous ECs and requires normal blood flow. At the same time, the establishment of blood flow prevents neighboring aISVs from transforming into veins by the upregulation of Notch signaling in these aISVs. Here, we propose that through these two processes, blood flow facilitates the transformation of the all-arterial trunk vasculature into a functional vascular network with near equal numbers of arteries and veins.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-ND 4.0 International license.
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Posted July 09, 2018.
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Blood flow-induced Notch activation and endothelial migration enable embryonic vascular remodeling.
Bart Weijts, Edgar Gutierrez, Semion K Saikin, Ararat J Ablooglu, David Traver, Alex Groisman, Eugene Tkachenko
bioRxiv 095307; doi: https://doi.org/10.1101/095307
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Blood flow-induced Notch activation and endothelial migration enable embryonic vascular remodeling.
Bart Weijts, Edgar Gutierrez, Semion K Saikin, Ararat J Ablooglu, David Traver, Alex Groisman, Eugene Tkachenko
bioRxiv 095307; doi: https://doi.org/10.1101/095307

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