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Updated: Apr 30, 2026

Demonstration of the Rat Ischemic Skin Wound Model
Published on: April 1, 2015
CD109, a novel TGF-β antagonist, decreases fibrotic responses in a hypoxic wound model
Sebastian Winocour1, Joshua Vorstenbosch, Alissa Trzeciak
1Division of Plastic Surgery, Department of Surgery, McGill University, Montreal, QC, Canada.
Abstract:
Excessive extracellular matrix deposition that occurs in many fibrotic skin disorders such as hypertrophic scarring and scleroderma is often associated with hypoxia. CD109 is a novel TGF-β co-receptor and TGF-β antagonist shown to inhibit TGF-β-induced extracellular matrix protein production in vitro. We examined whether CD109 is able to regulate extracellular matrix deposition under low oxygen tension in vivo using transgenic mice overexpressing CD109 in the epidermis. By creating dorsal bipedicle skin flaps with centrally located excisional wounds in these mice and their wild-type littermates, we generated a novel murine hypoxic wound model. Mice were sacrificed on 7 or 14 days post-wounding, and tissues were harvested for histological and biochemical analysis. Hypoxic wounds in both transgenic and wild-type mice showed increased levels of HIF-1α and delayed wound closure, validating this model in mice. Hypoxic wounds in CD109 transgenic mice demonstrated decreased collagen type 1 and fibronectin expression, and reduced dermal thickness on day 7 post-wounding as compared to those in wild-type mice and to non-hypoxic control wounds. These results suggest that CD109 decreases extracellular matrix production and fibrotic responses during hypoxic wound healing. Manipulating CD109 levels may have potential therapeutic value for the treatment of fibrotic skin disorders associated with poor oxygen delivery.
Insights
CD109 protein reduces fibrotic responses in skin wounds healing under low oxygen conditions. This suggests CD109 may be a therapeutic target for fibrotic skin disorders like scleroderma.
Area of Science:
- Dermatology
- Wound Healing Research
- Fibrosis Mechanisms
Background:
- Excessive extracellular matrix deposition characterizes fibrotic skin disorders, often linked to hypoxia.
- CD109 acts as a TGF-β co-receptor and antagonist, inhibiting extracellular matrix production in vitro.
Purpose of the Study:
- To investigate CD109's role in regulating extracellular matrix deposition in vivo under hypoxic conditions.
- To evaluate CD109's effect on wound healing in a novel murine hypoxic wound model.
Main Methods:
- Generated transgenic mice overexpressing CD109 in the epidermis.
- Created dorsal bipedicle skin flaps with excisional wounds to induce hypoxia.
- Analyzed tissue samples from hypoxic wounds at 7 and 14 days post-wounding for histological and biochemical markers.
Main Results:
- Validated the murine hypoxic wound model by observing increased HIF-1α and delayed wound closure.
- CD109 transgenic mice showed reduced collagen type 1 and fibronectin expression in hypoxic wounds.
- Decreased dermal thickness was observed in CD109 transgenic mice compared to wild-type controls.
Conclusions:
- CD109 effectively decreases extracellular matrix production and fibrotic responses during hypoxic wound healing.
- Modulating CD109 levels presents a potential therapeutic strategy for fibrotic skin conditions associated with hypoxia.

