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Highly effective fibrin biopolymer scaffold for stem cells upgrading bone regeneration.
Creste, Camila Fernanda Zorzella; Orsi, Patrícia Rodrigues; Landim-Alvarenga, Fernanda Cruz; Justulin, Luis Antônio; Golim, Marjorie de Assis; Barraviera, Benedito; Ferreira, Rui Seabra.
Afiliação
  • Creste CFZ; Center for the Study of Venoms and Venomous Animals (CEVAP), UNESP-São Paulo State University, Botucatu 18610-307, Brazil.
  • Orsi PR; Botucatu Medical School, UNESP-São Paulo State University, Botucatu 18618-687, Brazil.
  • Landim-Alvarenga FC; Center for the Study of Venoms and Venomous Animals (CEVAP), UNESP-São Paulo State University, Botucatu 18610-307, Brazil.
  • Justulin LA; College of Veterinary Medicine and Animal Husbandry (FMVZ), UNESP-São Paulo State University, Botucatu 18618-681, Brazil.
  • Golim MA; Botucatu Biosciences Institute, UNESP-São Paulo State University, Botucatu 18618-689, Brazil.
  • Barraviera B; Botucatu Medical School, UNESP-São Paulo State University, Botucatu 18618-687, Brazil.
  • Ferreira RS; Center for the Study of Venoms and Venomous Animals (CEVAP), UNESP-São Paulo State University, Botucatu 18610-307, Brazil.
Materials (Basel) ; 13(12)2020 Jun 17.
Article em En | MEDLINE | ID: mdl-32560388
ABSTRACT
Fibrin scaffold fits as a provisional platform promoting cell migration and proliferation, angiogenesis, connective tissue formation and growth factors stimulation. We evaluated a unique heterologous fibrin biopolymer as scaffold to mesenchymal stem cells (MSCs) to treat a critical-size bone defect. Femurs of 27 rats were treated with fibrin biopolymer (FBP); FBP + MSCs; and FBP + MSC differentiated in bone lineage (MSC-D). Bone repair was evaluated 03, 21 and 42 days later by radiographic, histological and scanning electron microscopy (SEM) imaging. The FBP + MSC-D association was the most effective treatment, since newly formed Bone was more abundant and early matured in just 21 days. We concluded that FBP is an excellent scaffold for MSCs and also use of differentiated cells should be encouraged in regenerative therapy researches. The FBP ability to maintain viable MSCs at Bone defect site has modified inflammatory environment and accelerating their regeneration.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Materials (Basel) Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Brasil

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Materials (Basel) Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Brasil