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Published February 17, 2021 | Published + Supplemental Material
Journal Article Open

Microfabricated Gaps Reveal the Effect of Geometrical Control in Wound Healing

Abstract

The geometry (size and shape) of gaps is a key determinant in controlling gap closure during wound healing. However, conventional methods for creating gaps result in un‐defined geometries and poorly characterized conditions (cell death factors and cell debris), which can influence the gap closure process. To overcome these limitations, a novel method to create well‐defined geometrical gaps is developed. First, smooth muscle cells (SMCs) are seeded in variously shaped micro‐containers made out of hyaluronic acid hydrogels. Cell proliferation and cell tension induce fibrous collagen production by SMCs predominantly around the edges of the micro‐containers. Upon removal of SMCs, the selectively deposited collagen results in micro‐containers with cell‐adhesive regions along the edges and walls. Fibroblasts are seeded in these micro‐containers, and upon attaching and spreading, they naturally form gaps with different geometries. The rapid proliferation of fibroblasts from the edge results in filling and closure of the gaps. It is demonstrated that gap closure rate as well as closure mechanism is strongly influenced by geometrical features, which points to an important role for cellular tension and cell proliferation in gap closure.

Additional Information

© 2020 The Authors. Published by Wiley‐VCH GmbH. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made. Issue Online: 17 February 2021; Version of Record online: 06 August 2020; Manuscript revised: 26 June 2020; Manuscript received: 17 April 2020. M.B. and J.X. contributed equally to this work. The authors are grateful to the Department of General Instruments of the Radboud University for providing confocal and light microscopy services. The authors acknowledge financial support from the China Scholarship Council (J.X. and X.H.). The authors declare no conflict of interest.

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August 22, 2023
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