Literature DB >> 16884856

A porcine deep dermal partial thickness burn model with hypertrophic scarring.

Leila Cuttle1, Margit Kempf, Gael E Phillips, Julie Mill, Mark T Hayes, John F Fraser, Xue-Qing Wang, Roy M Kimble.   

Abstract

We developed a reproducible model of deep dermal partial thickness burn injury in juvenile Large White pigs. The contact burn is created using water at 92 degrees C for 15s in a bottle with the bottom replaced with plastic wrap. The depth of injury was determined by a histopathologist who examined tissue sections 2 and 6 days after injury in a blinded manner. Upon creation, the circular wound area developed white eschar and a hyperaemic zone around the wound border. Animals were kept for 6 weeks or 99 days to examine the wound healing process. The wounds took between 3 and 5 weeks for complete re-epithelialisation. Most wounds developed contracted, purple, hypertrophic scars. On measurement, the thickness of the burned skin was approximately 1.8 times that of the control skin at week 6 and approximately 2.2 times thicker than control skin at 99 days after injury. We have developed various methods to assess healing wounds, including digital photographic analysis, depth of organising granulation tissue, immunohistochemistry, electron microscopy and tensiometry. Immunohistochemistry and electron microscopy showed that our porcine hypertrophic scar appears similar to human hypertrophic scarring. The development of this model allows us to test and compare different treatments on burn wounds.

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Year:  2006        PMID: 16884856     DOI: 10.1016/j.burns.2006.02.023

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


  28 in total

1.  Expression and activity levels of chymase in mast cells of burn wound tissues increase during the healing process in a hamster model.

Authors:  Xianglin Dong; Tao Xu; Shaolin Ma; Hao Wen
Journal:  Exp Ther Med       Date:  2015-04-14       Impact factor: 2.447

2.  Differentiation of burn wounds in an in vivo porcine model using terahertz spectroscopy.

Authors:  Omar B Osman; Timothy Jack Tan; Sam Henry; Adelaide Warsen; Navid Farr; Abbi M McClintic; Yak-Nam Wang; Saman Arbabi; M Hassan Arbab
Journal:  Biomed Opt Express       Date:  2020-10-19       Impact factor: 3.732

Review 3.  Comparing the reported burn conditions for different severity burns in porcine models: a systematic review.

Authors:  Christine J Andrews; Leila Cuttle
Journal:  Int Wound J       Date:  2017-07-23       Impact factor: 3.315

4.  The effect of nano-scale topography on keratinocyte phenotype and wound healing following burn injury.

Authors:  Leigh G Parkinson; Suzanne M Rea; Andrew W Stevenson; Fiona M Wood; Mark W Fear
Journal:  Tissue Eng Part A       Date:  2011-12-08       Impact factor: 3.845

5.  How to create burn porcine models: a systematic review.

Authors:  A Wardhana; R F M Lumbuun; D Kurniasari
Journal:  Ann Burns Fire Disasters       Date:  2018-03-31

6.  Validation of a vertical progression porcine burn model.

Authors:  Adam J Singer; Douglas Hirth; Steve A McClain; Laurie Crawford; Fubao Lin; Richard A F Clark
Journal:  J Burn Care Res       Date:  2011 Nov-Dec       Impact factor: 1.845

7.  A new model for studying deep partial-thickness burns in rats.

Authors:  Hui-Fang Guo; Razana M Ali; Roslida A Hamid; Asma A Zaini; Huzwah Khaza'ai
Journal:  Int J Burns Trauma       Date:  2017-10-25

8.  Expression of collagen genes in the cones of skin in the Duroc/Yorkshire porcine model of fibroproliferative scarring.

Authors:  Kathy Q Zhu; Gretchen J Carrougher; Oliver P Couture; Christopher K Tuggle; Nicole S Gibran; Loren H Engrav
Journal:  J Burn Care Res       Date:  2008 Sep-Oct       Impact factor: 1.845

9.  A novel device to create consistent deep dermal burns in a porcine model.

Authors:  Seema Menon; Queenie Chan; Monique Bertinetti; John G Harvey; Erik R La Hei; Andrew Ja Holland
Journal:  Int J Burns Trauma       Date:  2016-06-01

Review 10.  Thermal injury of skin and subcutaneous tissues: A review of experimental approaches and numerical models.

Authors:  Hanglin Ye; Suvranu De
Journal:  Burns       Date:  2016-12-05       Impact factor: 2.744

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