Wound healing revised: A novel reepithelialization mechanism revealed by in vitro and in silico models

Author:

Safferling Kai11,Sütterlin Thomas11,Westphal Kathi11,Ernst Claudia11,Breuhahn Kai2,James Merlin11,Jäger Dirk11,Halama Niels11,Grabe Niels11

Affiliation:

1. Hamamatsu Tissue Imaging and Analysis Center, BIOQUANT, and Department of Medical Oncology, National Center for Tumor Diseases, University of Heidelberg, 69117 Heidelberg, Germany

2. Institute of Pathology, University Hospital of Heidelberg, 69120 Heidelberg, Germany

Abstract

Wound healing is a complex process in which a tissue’s individual cells have to be orchestrated in an efficient and robust way. We integrated multiplex protein analysis, immunohistochemical analysis, and whole-slide imaging into a novel medium-throughput platform for quantitatively capturing proliferation, differentiation, and migration in large numbers of organotypic skin cultures comprising epidermis and dermis. Using fluorescent time-lag staining, we were able to infer source and final destination of keratinocytes in the healing epidermis. This resulted in a novel extending shield reepithelialization mechanism, which we confirmed by computational multicellular modeling and perturbation of tongue extension. This work provides a consistent experimental and theoretical model for epidermal wound closure in 3D, negating the previously proposed concepts of epidermal tongue extension and highlighting the so far underestimated role of the surrounding tissue. Based on our findings, epidermal wound closure is a process in which cell behavior is orchestrated by a higher level of tissue control that 2D monolayer assays are not able to capture.

Publisher

Rockefeller University Press

Subject

Cell Biology

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