| Literature DB >> 28960933 |
Ane Garate1, Pello Sánchez1,2,3, Diego Delgado1, Ane Miren Bilbao4, Emma Muiños-López5, Froilán Granero-Moltó5, Gorka Orive2,3, Felipe Prosper5,6, José Luis Pedraz2,3, Mikel Sánchez1,4.
Abstract
In the field of tissue engineering, diverse types of bioscaffolds are being developed currently for osteochondral defect applications. In this work, a novel scaffold based on platelet rich plasma (PRP) and hyaluronic acid with mesenchymal stem cells (MSCs) has been evaluated to observe its effect on immobilized cells. The bioscaffolds were prepared by mixing different volumes of synovial fluid (SF) with PRP from patients obtaining three formulations at PRP-SF ratios of 3:1, 1:1 and 1:3 (v/v). The live/dead staining revealed that although the cell number of each type of bioscaffold was different, these this constructs provide cells with a suitable environment for their viability and proliferation. Moreover, immobilized MSCs showed their ability to secrete fibrinolytic enzymes, which vary depending on the fibrin amount of the scaffold. Immunohistochemical analysis revealed the positive staining for collagen type II in all cases, proving the biologic action of SF derived MSCs together with the suitable characteristics of the bioscaffold for chondrogenic differentiation. Considering all these aspects, this study demonstrates that these cells-based constructs represent an attractive method for cell immobilization, achieving completely autologous and biocompatible scaffolds.Entities:
Keywords: MSCs; bioscaffold; fibrin; platelet rich plasma; synovial fluid
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Year: 2017 PMID: 28960933 DOI: 10.1002/jbm.a.36247
Source DB: PubMed Journal: J Biomed Mater Res A ISSN: 1549-3296 Impact factor: 4.396