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Published on: February 28, 2013
Gene expression profiling of negative-pressure-treated skin graft donor site wounds
Kristo Nuutila1, Antti Siltanen, Matti Peura
1Institute of Biomedicine, Pharmacology, Biomedicum, University of Helsinki, Haartmaninkatu 8, 00290 Helsinki, Finland. kristo.nuutila@helsinki.fi
Abstract:
Negative-pressure wound therapy (NPWT) is widely used to improve skin wound healing. Although NPWT has been studied as a treatment for wound closure and healing, the molecular mechanisms explaining its therapeutic effects remain unclear. To investigate the effect of NPWT on gene expression, and to discover the genes most dominantly responding to this treatment during skin wound healing, we applied negative pressure on split-thickness skin graft donor sites from the first postoperative day (POD) to the seventh POD. Biopsies were collected from 4 NPWT-treated and 2 control patients. Two biopsy samples were taken from each patient: one from intact skin before graft harvesting, and one on the seventh POD from the donor site wound. Genome-wide microarrays were performed on all samples. Gene expression changes on the seventh POD were compared between NPWT and control patients, and were analyzed for statistical significance. In addition, we analyzed wound exudates for volume, and for concentrations of leukocytes, erythrocytes, and haemoglobin. NPWT induced major changes in gene expression during healing. These changes ranged from 10-fold induction to 27-fold suppression. The genes most induced were associated with cell proliferation and inflammation, and the most down-regulated genes were linked to epidermal differentiation. Our results provide the first insight into the molecular mechanisms behind NPWT, and suggest that NPWT enhances specific inflammatory gene expression at the acute phase associated with epithelial migration and wound healing. However, its continued use may inhibit epithelial differentiation.
Insights
Negative-pressure wound therapy (NPWT) significantly alters gene expression during skin healing. It promotes cell proliferation and inflammation but may impede epithelial differentiation.
Area of Science:
- Biomedical Engineering
- Wound Healing Research
- Molecular Biology
Background:
- Negative-pressure wound therapy (NPWT) is a common treatment for improving skin wound healing.
- The precise molecular mechanisms underlying NPWT's therapeutic effects are not fully understood.
Purpose of the Study:
- To investigate the impact of NPWT on gene expression during skin wound healing.
- To identify key genes responsive to NPWT in the context of wound healing.
Main Methods:
- Split-thickness skin graft donor sites were treated with NPWT from postoperative day 1 to 7.
- Genome-wide microarrays were used to analyze gene expression in biopsies from NPWT-treated and control patients.
- Wound exudates were analyzed for volume, leukocytes, erythrocytes, and hemoglobin.
Main Results:
- NPWT induced substantial gene expression changes, with inductions up to 10-fold and suppressions up to 27-fold.
- Upregulated genes were primarily associated with cell proliferation and inflammation.
- Downregulated genes were linked to epidermal differentiation.
Conclusions:
- This study offers initial insights into the molecular mechanisms of NPWT in wound healing.
- NPWT appears to enhance inflammatory gene expression crucial for acute wound healing and epithelial migration.
- Prolonged NPWT application might potentially inhibit epithelial differentiation.
