Literature DB >> 8198745

Cultured epidermal autografts and allodermis combination for permanent burn wound coverage.

W L Hickerson1, C Compton, S Fletchall, L R Smith.   

Abstract

Cultured epidermal autografts (CEA) have been shown to be an effective permanent skin replacement for major burn injuries, but are more sensitive to adverse conditions than split thickness grafts (Clarke et al., 1988). Cuono et al. (1986, 1987) have described the successful use of engrafted allodermis as a wound bed for cultured grafts. We report on a method of preparing allodermis and grafting CEA in five patients with major burns (48-70 per cent TBSA, average 59.6 per cent). The average age was 38.8 years (20-60 years). All full thickness wounds were excised down to fat within 7 days of admission, and covered with meshed split thickness cryopreserved homograft. Over the ensuing 2-3 weeks, the homograft became engrafted. At surgery, the allo-epidermis was removed, leaving the dermal components as a viable bed for the CEA. Keratinocytes derived from a full thickness biopsy were grown to confluence by the method of Rheinwald and Green (1975), and 25 cm2 sheets were stapled to Vaseline gauze backings and applied to freshly excised wounds. Seven to 10 days after surgery, the gauze backings were removed. The average take ranged from 87-100 per cent (average 93.6 per cent). Follow-up for up to 4 years shows supple skin that has been durable, and resistant to trauma and infection.

Entities:  

Mesh:

Year:  1994        PMID: 8198745     DOI: 10.1016/0305-4179(94)90091-4

Source DB:  PubMed          Journal:  Burns        ISSN: 0305-4179            Impact factor:   2.744


  19 in total

1.  Preliminary study of a polycaprolactone membrane utilized as epidermal substrate.

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2.  Radiation induces diffusible feeder cell factor(s) that cooperate with ROCK inhibitor to conditionally reprogram and immortalize epithelial cells.

Authors:  Nancy Palechor-Ceron; Frank A Suprynowicz; Geeta Upadhyay; Aleksandra Dakic; Tsion Minas; Vera Simic; Michael Johnson; Christopher Albanese; Richard Schlegel; Xuefeng Liu
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3.  Skin storage.

Authors:  S R Myers; M R Machesney; R M Warwick; P D Cussons
Journal:  BMJ       Date:  1996-08-24

Review 4.  Cultivation of human keratinocyte stem cells: current and future clinical applications.

Authors:  G Pellegrini; S Bondanza; L Guerra; M De Luca
Journal:  Med Biol Eng Comput       Date:  1998-11       Impact factor: 2.602

Review 5.  Burns (Part 2). Tops and flops using cultured epithelial autografts in children.

Authors:  M Meuli; M Raghunath
Journal:  Pediatr Surg Int       Date:  1997-09       Impact factor: 1.827

6.  Cost-efficacy of cultured epidermal autografts in massive pediatric burns.

Authors:  J P Barret; S E Wolf; M H Desai; D N Herndon
Journal:  Ann Surg       Date:  2000-06       Impact factor: 12.969

7.  Wound healing of cutaneous sulfur mustard injuries: strategies for the development of improved therapies.

Authors:  John S Graham; Robert P Chilcott; Paul Rice; Stephen M Milner; Charles G Hurst; Beverly I Maliner
Journal:  J Burns Wounds       Date:  2005-01-05

8.  Improved wound healing of cutaneous sulfur mustard injuries in a weanling pig model.

Authors:  John S Graham; Robert S Stevenson; Larry W Mitcheltree; Marcia Simon; Tracey A Hamilton; Robin R Deckert; Robyn B Lee
Journal:  J Burns Wounds       Date:  2006-11-08

9.  Tissue engineering of injectable soft tissue filler: using adipose stem cells and micronized acellular dermal matrix.

Authors:  Gyeol Yoo; Jin Soo Lim
Journal:  J Korean Med Sci       Date:  2009-02-28       Impact factor: 2.153

Review 10.  Cellular human tissue-engineered skin substitutes investigated for deep and difficult to heal injuries.

Authors:  Álvaro Sierra-Sánchez; Kevin H Kim; Gonzalo Blasco-Morente; Salvador Arias-Santiago
Journal:  NPJ Regen Med       Date:  2021-06-17
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