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Updated: Aug 4, 2026

Generation and Culturing of Primary Human Keratinocytes from Adult Skin
Published on: December 22, 2017
Use of cultured keratinocytes in the treatment of severe burns
M Bettex-Galland1, T Slongo, T Hunziker
1Department of Paediatric Surgery, University of Berne, Switzerland.
Insights
Autologous keratinocyte implantation successfully treated a severe burn injury. This technique offers a promising alternative to traditional skin grafting for extensive deep burns, showing comparable clinical and histological results.
Area of Science:
- Regenerative Medicine
- Dermatology
- Burn Surgery
Background:
- Severe burn injuries often require extensive skin grafting.
- Limited donor sites pose a challenge for treating large-area deep burns.
Observation:
- A pediatric patient with extensive third-degree burns (40% body surface) was treated with mesh grafts and autologous keratinocyte implantation.
- Skin grafting of hands with full-thickness skin was performed.
- Split-thickness scalp skin was cultured to expand keratinocytes.
Findings:
- Autologous keratinocytes were successfully cultured and expanded.
- Implanted keratinocytes formed a well-differentiated epidermis over the burn site.
- Both mesh-grafted and keratinocyte-implanted sites showed similar clinical and histological outcomes.
- Keratinocyte-implanted epidermis lacked pigmentation but had superior aesthetic appearance.
Implications:
- Autologous keratinocyte implantation is a viable treatment for deep, extensive burn wounds.
- This method can overcome donor site limitations in reconstructive surgery.
- Further research may optimize keratinocyte culturing and implantation for improved outcomes, including pigmentation.
Abstract:
A 6 1/2-year-old child was admitted to the emergency ward for third degree burn injuries representing 40% of body surface. Shock therapy was first applied. After débridement and in a series of operating sessions hands were grafted with full-thickness skin and most other wounds were covered with mesh grafts. On the 14th day after admission a piece of approximately 5 cm2 split thickness scalp skin was used to expand the keratinocytes by cell culture techniques according to the method of Rheinwald and Green (7). After 20 days 4 sheets of cells of first subculture, each 10 cm in diameter, representing a surface of approximately 300 cm2, were implanted on the front of the left thigh, which was burnt third-degree deep. Light microscopy of punch biopsies from mesh grafted and keratinocyte implanted sites taken 5 months after grafting showed a well differentiated epidermis overlying scar tissue. The following conclusions were drawn: Autologous keratinocytes did take on a third degree wound. No basic difference was observed neither clinically nor histologically between mesh-grafted and keratinocyte-implanted sites. The epidermis formed by keratinocyte implantation lacked pigmentation but presented an aesthetically better appearance than the mesh-graft treated sites. Given the scarcity of donor sites and the results obtained by implanting keratinocyte cultures, this latter technique may be resorted to in any extended and deep burn injury.
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