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Tissue Constructs with Human Adipose-Derived Mesenchymal Stem Cells to Treat Bone Defects in Rats.

Guilherme Caetano | Weiguang Wang | Adriana Murashima | José Roberto Passarini | Leonardo Bagne | Marcel Leite | Miguel Hyppolito | Salem Al-Deyab | Mohamed El-Newehy | Paulo Bártolo | Marco Andrey Cipriani Frade
Materials (Basel, Switzerland) | 2019

The use of porous scaffolds created by additive manufacturing is considered a viable approach for the regeneration of critical-size bone defects. This paper investigates the xenotransplantation of polycaprolactone (PCL) tissue constructs seeded with differentiated and undifferentiated human adipose-derived mesenchymal stem cells (hADSCs) to treat calvarial critical-sized defect in Wistar rats. PCL scaffolds without cells were also considered. In vitro and in vivo biological evaluations were performed to assess the feasibility of these different approaches. In the case of cell seeded scaffolds, it was possible to observe the presence of hADSCs in the rat tissue contributing directly (osteoblasts) and indirectly (stimulation by paracrine factors) to tissue formation, organization and mineralization. The presence of bone morphogenetic protein-2 (BMP-2) in the rat tissue treated with cell-seeded PCL scaffolds suggests that the paracrine factors of undifferentiated hADSC cells could stimulate BMP-2 production by surrounding cells, leading to osteogenesis. Moreover, BMP-2 acts synergistically with growth factors to induce angiogenesis, leading to higher numbers of blood vessels in the groups containing undifferentiated and differentiated hADSCs.

Pubmed ID: 31311087

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Associated grants

  • Agency: Fundação de Amparo à Pesquisa do Estado de São Paulo,
    Id: 2013/20554-0 and 2013/09055-2

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WI (tool)

RRID:RGD_13508588

Rattus norvegicus with name WI from RGD.

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