Polymerizable Skin Hydrogel for Full Thickness Wound Healing

Author:

Persinal-Medina MairobiORCID,Llames SaraORCID,Chacón Manuel,Vázquez NataliaORCID,Pevida Marta,Alcalde IgnacioORCID,Alonso-Alonso SergioORCID,Martínez-López Laura MaríaORCID,Merayo-Lloves Jesús,Meana ÁlvaroORCID

Abstract

The skin is the largest organ in the human body, comprising the main barrier against the environment. When the skin loses its integrity, it is critical to replace it to prevent water loss and the proliferation of opportunistic infections. For more than 40 years, tissue-engineered skin grafts have been based on the in vitro culture of keratinocytes over different scaffolds, requiring between 3 to 4 weeks of tissue culture before being used clinically. In this study, we describe the development of a polymerizable skin hydrogel consisting of keratinocytes and fibroblast entrapped within a fibrin scaffold. We histologically characterized the construct and evaluated its use on an in vivo wound healing model of skin damage. Our results indicate that the proposed methodology can be used to effectively regenerate skin wounds, avoiding the secondary in vitro culture steps and thus, shortening the time needed until transplantation in comparison with other bilayer skin models. This is achievable due to the instant polymerization of the keratinocytes and fibroblast combination that allows a direct application on the wound. We suggest that the polymerizable skin hydrogel is an inexpensive, easy and rapid treatment that could be transferred into clinical practice in order to improve the treatment of skin wounds.

Funder

Programa Jovellanos Gobierno del Principado de Asturias

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference42 articles.

1. Anatomy, histology and immunohistochemistry of normal human skin;Kanitakis;Eur. J. Dermatol.,2002

2. Anatomy, Skin (Integument);Lopez-Ojeda,2020

3. Tissue engineering of skin and regenerative medicine for wound care

4. Burns https://www.who.int/news-room/fact-sheets/detail/burns

5. Epidemiology of burns throughout the world. Part I: Distribution and risk factors

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