Abstract
Effective dressings for donor sites or other partial thickness wounds must promote removal of nonviable or necrotic tissue, eradication and prevention of microbial infiltrate, exudate absorbance, and regrowth of healthy epidermis and dermis. There are many commonly used products that facilitate these processes. Established properties of an in situ photopolymerizable semi-interpenetrating network (sIPN) suggest that it is also a viable treatment option. The widely varying material properties suggest that these dressing treatments may elicit different healing responses via different cellular mechanisms. In this study, we sought to resolve the differences in healing between Acticoat, sIPN, nonadherent dressing with Tisseel, and Xeroform dressing treatments in a porcine partial thickness wound model. Donor site wounds were produced on pigs at two cut depths and dressed with Acticoat, sIPN, nonadherent dressing with Tisseel, and Xeroform with alternatively placed autografts to provide a control area between each test site. Pigs were euthanized at 4, 7, 14, and 42 days for macroscopic examination and biopsy collection. Biopsies were analyzed histologically by two blinded observers for cellular densities and regional thicknesses within the tissue. sIPN- and Xeroform-treated wounds were healed by 7 days, and Acticoat- and nonadherent dressing with Tisseel-treated wounds were healed by 14 days. Inflammatory responses were between comparable treatment type across all time periods. Dermal granulation features increased with time but were not significantly different. All dressing treatments elicited wound healing without outstanding toxicity or pathology indicating that sIPN is a comparable and viable treatment for partial thickness wounds.
MeSH Terms
Animals
Burns/therapy
Disease Models, Animal
Fibrin Tissue Adhesive
Inflammation
Occlusive Dressings
Phenols
Polyesters
Polyethylenes
Skin Transplantation
Swine
Wound Healing
Chemicals
Acticoat
Fibrin Tissue Adhesive
Phenols
Polyesters
Polyethylenes
2,4,6-tribromophenol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kleinbeck Kyle R
Pharmaceutical Sciences Division, School of Pharmacy, University of Wisconsin-Madison, Wisconsin 53705, USA.
Faucher Lee
Kao Weiyuan John
References (14)
14 references, click to expand
-
A new quantitative scale for clinical scar assessment.
Plast Reconstr Surg. 1998 Nov;102(6):1954-61
PMID: 9810991
-
In vivo biocompatibility of gelatin-based hydrogels and interpenetrating networks.
J Biomater Sci Polym Ed. 2002;13(12):1353-66
PMID: 12555901
-
Analysis of poly(ethylene glycol)-diacrylate macromer polymerization within a multicomponent semi-interpenetrating polymer network system.
J Biomed Mater Res A. 2004 Dec 1;71(3):508-18
PMID: 15386483
-
A review of moisture-control dressings in wound care.
J Wound Ostomy Continence Nurs. 2006 Nov-Dec;33(6 Suppl):S3-8
PMID: 17582895
-
Synthesis and physicochemical analysis of gelatin-based hydrogels for drug carrier matrices.
Biomaterials. 2003 Feb;24(3):509-23
PMID: 12423606
-
Macrophage adhesion on gelatin-based interpenetrating networks grafted with PEGylated RGD.
Tissue Eng. 2005 May-Jun;11(5-6):964-73
PMID: 15998235
-
Stratum corneum lipid profile and maturation pattern of corneocytes in the outermost layer of fresh scars: the presence of immature corneocytes plays a much more important role in the barrier dysfunction than do changes in intercellular lipids.
Br J Dermatol. 2003 Oct;149(4):749-56
PMID: 14616365
-
New evidence for an enduring wound-healing concept: moisture control.
J Wound Ostomy Continence Nurs. 2006 Nov-Dec;33(6 Suppl):S1-2
PMID: 17106399
-
Cutaneous tissue repair: basic biologic considerations. I.
J Am Acad Dermatol. 1985 Nov;13(5 Pt 1):701-25
PMID: 2416789
-
Interfacial photopolymerization of poly(ethylene glycol)-based hydrogels upon alginate-poly(l-lysine) microcapsules for enhanced biocompatibility.
Biomaterials. 1993 Oct;14(13):1008-16
PMID: 8286667
-
Histology of the thick scar on the female, red Duroc pig: final similarities to human hypertrophic scar.
Burns. 2006 Sep;32(6):669-77
PMID: 16905264
-
The skin barrier as an innate immune element.
Semin Immunopathol. 2007 Apr;29(1):3-14
PMID: 17621950
-
Review of the female Duroc/Yorkshire pig model of human fibroproliferative scarring.
Wound Repair Regen. 2007 Sep-Oct;15 Suppl 1:S32-9
PMID: 17727465
-
Interpenetrating polymer networks containing gelatin modified with PEGylated RGD and soluble KGF: synthesis, characterization, and application in in vivo critical dermal wound.
J Biomed Mater Res A. 2007 Sep 15;82(4):861-71
PMID: 17335014