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Updated: Jun 21, 2026

Microfluidic Model to Mimic Initial Event of Neovascularization
Published on: April 10, 2021
Mathematical modeling of the capillary-like pattern generated by adrenomedullin-treated human vascular endothelial
Diego Guidolin1, Giovanna Albertin, Elisa Sorato
1Department of Human Anatomy and Physiology, Section of Anatomy, University of Padova Medical School, Padova, Italy. diego.guidolin@unipd.it
Abstract:
A recently proposed approach was used to model the self-organization into capillary-like structures of human vascular endothelial cells cultured on Matrigel. The model combines a Cellular Potts Model, considering cell adhesion, cytoskeletal rearrangement and chemotaxis, and a Partial Differential Equation model describing the release and the diffusion of a chemoattractant. The results were compared with the data from real in vitro experiments to establish the capability of the model to accurately reproduce both the spontaneous self-assembly of unstimulated cells and their self-organization in the presence of the pro-angiogenic factor adrenomedullin. The results showed that the model can accurately reproduce the self-assembly of unstimulated cells, but it failed in reproducing the adrenomedullin-induced self-organization of the cells. The extension of the model to include cell proliferation led to a good match between simulated and experimental patterns in both cases with predicted proliferation rates in agreement with the data of cell proliferation experiments.
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