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PMID: 15260814 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Quantitative and reproducible murine model of excisional wound healing.

Galiano RD, Michaels J, Dobryansky M, Levine JP, Gurtner GC

Abstract

The goal of animal wound healing models is to replicate human physiology and predict therapeutic outcomes. There is currently no model of wound healing in rodents that closely parallels human wound healing. Rodents are attractive candidates for wound healing studies because of their availability, low cost, and ease of handling. However, rodent models have been criticized because the major mechanism of wound closure is contraction, whereas in humans reepithelialization and granulation tissue formation are the major mechanisms involved. This article describes a novel model of wound healing in mice utilizing wound splinting that is accurate, reproducible, minimizes wound contraction, and allows wound healing to occur through the processes of granulation and reepithelialization. Our results show that splinted wounds have an increased amount of granulation tissue deposition as compared to controls, but the rate of reepithelialization is not affected. Thus, this model eliminates wound contraction and allows rodents' wounds to heal by epithelialization and granulation tissue formation. Given these analogies to human wound healing, we believe that this technique is a useful model for the study of wound healing mechanisms and for the evaluation of new therapeutic modalities.

MeSH Terms
Animals Epithelium/physiology Granulation Tissue/physiology Mice Mice, Inbred C57BL Models, Animal Wound Healing/physiology
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Galiano Robert D
Laboratory of Microvascular Research and Vascular Tissue Engineering, Institute of Reconstructive Surgery, New York University Medical Center, 560 First Avenue, New York, NY 10016, USA.
Michaels Joseph
Dobryansky Michael
Levine Jamie P
Gurtner Geoffrey C
Article Info
Journal
Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society
Abbr.
Wound Repair Regen
ISSN
1067-1927
Published
2004-00-00
Pages
485-92
Language
English
Region
United States
NLM ID
9310939
Subset
IM
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