Related Experiment Video
Updated: Mar 18, 2026

Preclinical Model of Hind Limb Ischemia in Diabetic Rabbits
Published on: June 2, 2019
Syndecan-4 enhances PDGF-BB activity in diabetic wound healing
Subhamoy Das1, Marjan Majid1, Aaron B Baker2
1Department of Biomedical Engineering, University of Texas, Austin, TX, United States.
Unlabelled:
Non-healing ulcers are a common consequence of long-term diabetes and severe peripheral vascular disease. These non-healing wounds are a major source of morbidity in patients with diabetes and place a heavy financial burden on the healthcare system. Growth factor therapies are an attractive strategy for enhancing wound closure in non-healing wounds but have only achieved mixed results in clinical trials. Platelet derived growth factor-BB (PDGF-BB) is the only currently approved growth factor therapy for non-healing wounds. However, PDGF-BB therapy is not effective in many patients and requires high doses that increase the potential for side effects. In this work, we demonstrate that syndecan-4 delivered in a proteoliposomal formulation enhances PDGF-BB activity in diabetic wound healing. In particular, syndecan-4 proteoliposomes enhance the migration of keratinocytes derived from patients with diabetes. In addition, syndecan-4 proteoliposomes sensitize keratinocytes to PDGF-BB stimulation, enhancing the intracellular signaling response to PDGF-BB. We further demonstrated that co-therapy with syndecan-4 proteoliposomes enhanced wound closure in diabetic, hyperlipidemic ob/ob mice. Wounds treated with both syndecan-4 proteoliposomes and PDGF-BB had increased re-epithelization and angiogenesis in comparison to wounds treated with PDGF-BB alone. Moreover, the wounds treated with syndecan-4 proteoliposomes and PDGF-BB also had increased M2 macrophages and reduced M1 macrophages, suggesting syndecan-4 delivery induces immunomodulation within the healing wounds. Together our findings support that syndecan-4 proteoliposomes markedly improve PDGF-BB efficacy for wound healing and may be useful in enhancing treatments for non-healing wounds.
Statement Of Significance:
Non-healing wounds are major healthcare issue for patients with diabetes and peripheral vascular disease. Growth factor therapies have potential for healing chronic wounds but have not been effective for many patients. PDGF-BB is currently the only approved growth factor for enhancing wound healing. However, it has not seen widespread adoption due to limited efficacy and high cost. In this work, we have developed an enhancing agent that improves the activity of PDGF-BB in promoting wound healing in animals with diabetes. This co-therapy may be useful in improving the efficacy of PDGFBB and enhance its safety through lowering the dose of growth factor needed to improve wound healing.
Insights
Syndecan-4 proteoliposomes enhance platelet-derived growth factor-BB (PDGF-BB) efficacy for diabetic wound healing. This novel co-therapy improves wound closure and immune response, potentially reducing side effects of growth factor treatments.
Area of Science:
- Biomedical Engineering
- Regenerative Medicine
- Wound Healing Research
Background:
- Non-healing ulcers are a significant complication of diabetes and peripheral vascular disease, posing a major healthcare challenge.
- Current growth factor therapies, like platelet-derived growth factor-BB (PDGF-BB), show limited efficacy and require high doses, leading to side effects.
- There is a critical need for strategies to improve the effectiveness and safety of wound healing treatments.
Purpose of the Study:
- To investigate the potential of syndecan-4 delivered in a proteoliposomal formulation to enhance PDGF-BB activity in diabetic wound healing.
- To evaluate the impact of syndecan-4 proteoliposomes on keratinocyte migration and response to PDGF-BB.
- To assess the therapeutic effects of co-administering syndecan-4 proteoliposomes and PDGF-BB on wound closure, angiogenesis, and immune modulation in a diabetic mouse model.
Main Methods:
- Syndecan-4 was formulated into proteoliposomes for delivery.
- Keratinocyte migration assays were performed using cells from diabetic patients.
- In vivo studies involved co-therapy with syndecan-4 proteoliposomes and PDGF-BB in diabetic, hyperlipidemic mice (ob/ob).
- Wound closure, re-epithelization, angiogenesis, and macrophage polarization (M1/M2) were analyzed.
Main Results:
- Syndecan-4 proteoliposomes enhanced keratinocyte migration and sensitized cells to PDGF-BB stimulation.
- Co-therapy significantly improved wound closure, re-epithelization, and angiogenesis compared to PDGF-BB alone in diabetic mice.
- Treatment with syndecan-4 proteoliposomes and PDGF-BB modulated the immune response, increasing M2 macrophages and decreasing M1 macrophages.
Conclusions:
- Syndecan-4 proteoliposomes markedly improve the efficacy of PDGF-BB for promoting diabetic wound healing.
- This co-therapy demonstrates potential for enhancing wound closure and inducing beneficial immunomodulation.
- Syndecan-4 proteoliposomes may offer a strategy to improve treatment outcomes for non-healing wounds, potentially allowing for reduced PDGF-BB dosage.

