Carrageenan hydrogel as a scaffold for skin-derived multipotent stromal cells delivery

Author:

Rode Michele Patricia1,Batti Angulski Addeli Bez1,Gomes Felipe Azevedo1,da Silva Maiara Marques1,Jeremias Talita da Silva1,de Carvalho Rafael Guzella1,Iucif Vieira Daniel Gonçalves1,Oliveira Luiz Fernando Cappa1,Fernandes Maia Lenize1,Trentin Andrea Gonçalves1,Hayashi Leila1,de Miranda Kildare Rocha1,de Aguiar Adriano Kopke1,Rosa Rafael Diego1,Calloni Giordano Wosgrau1ORCID

Affiliation:

1. Universidade Federal de Santa Catarina, Florianopolis, Brazil

Abstract

Carrageenan is a thermoreversible polymer of natural origin widely used in food and pharmaceutical industry that presents a glycosaminoglycan-like structure. Herein, we show that kappa-type carrageenan extracted by a semi-refined process from the red seaweed Kappaphycus alvarezii displayed both chemical and structural properties similar to a commercial carrageenan. Moreover, both extracted carrageenan hydrogel and commercial carrageenan hydrogel can serve as a scaffold for in vitro culture of human skin-derived multipotent stromal cells, demonstrating considerable potential as cell-carrier materials for cell delivery in tissue engineering. Skin-derived multipotent stromal cells cultured inside the carrageenan hydrogels showed a round shape morphology and maintained their growth and viability for at least one week in culture. Next, the effect of the extracted carrageenan hydrogel loaded with human skin-derived multipotent stromal cells was evaluated in a mouse model of full-thickness skin wound. Macroscopic and histological analyses revealed some pointed ameliorated features, such as reduced inflammatory process, faster initial recovery of wounded area, and improved extracellular matrix deposition. These results indicate that extracted carrageenan hydrogel can serve as a scaffold for in vitro growth and maintenance of human SD-MSCs, being also able to act as a delivery system of cells to wounded skin. Thus, evaluation of the properties discussed in this study contribute to a further understanding and specificities of the potential use of carrageenan hydrogel as a delivery system for several applications, further to skin wound healing.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Fundação de Amparo à Pesquisa e Inovação do Estado de Santa Catarina

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials

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