4.4 Article

Transgenic skin biomechanical properties following first lifesaving epidermal regeneration using combined gene and cell therapy

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WILEY
DOI: 10.1111/ddg.14978

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Researchers have successfully regenerated skin through combined gene and stem cell therapy, and demonstrated its excellent long-term stability. Analysis of biomechanical properties showed significant differences between the transgenic epidermis, non-transgenic skin, and healthy controls. The study suggests potential applications for this technology in treating burns and other conditions.
BackgroundIn 2017, we reported the first life-saving regeneration of virtually an entire epidermis by combined gene and stem cell therapy. Recently, we demonstrated excellent long-term stability of this transgenic epidermis. Skin quality in this experimental approach and its potential application in other conditions were elucidated here regarding long-term outcomes of biomechanical properties. Patients and methodsAnalysis of biomechanical properties including skin elasticity, anisotropy and friction was performed on multiple body sites 24, 36 and 60 months following transplantation. Firstly, the sites were matched against and compared to remaining stable non-transgenic areas as well as to a control group of 13 healthy subjects. Parameters for skin elasticity, deformation and friction were assessed non-invasively. ResultsBiomechanical properties of the transgenic epidermis showed encouraging results in comparison to both the remaining stable non-transgenic skin as well as healthy controls. Skin elasticity was comparable to the controls. Skin friction showed some decrease in both transgenic and non-transgenic areas as compared to the controls. ConclusionsThe excellent functional outcomes of the transgenic epidermis demonstrate stable long-term results of this novel combined gene and stem cell therapy for epidermal regeneration. Thus, other applications for this technology, such as treatment of specific burns, should be explored.

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