The Dual-Responsive Interaction of Particulated Hyaline Cartilage and Plasma Rich in Growth Factors (PRGF) in the Repair of Cartilage Defects: An In Vitro Study

Author:

Anitua Eduardo123ORCID,Prado Roberto123ORCID,Guadilla Jorge456,Alkhraisat Mohammad H.123ORCID,Laiz Patricia78,Padilla Sabino123,García-Balletbó Montserrat78,Cugat Ramón789

Affiliation:

1. Eduardo Anitua Foundation for Biomedical Research, 01007 Vitoria, Spain

2. Regenerative Medicine Laboratory, BTI-Biotechnology Institute IMASD, 01007 Vitoria, Spain

3. University Institute for Regenerative Medicine & Oral Implantology—UIRMI (UPV/EHU-Fundación Eduardo Anitua), 01007 Vitoria, Spain

4. Osakidetza Basque Health Service, Araba University Hospital, 01009 Vitoria, Spain

5. Arthroscopic Surgery Unit, Hospital Vithas Vitoria, 01008 Vitoria, Spain

6. Department of Surgery and Radiology and Physical Medicine, Faculty of Medicine and Nursing, University of the Basque Country (UPV/EHU), 01006 Vitoria, Spain

7. Fundación García Cugat para Investigación Biomédica, 08023 Barcelona, Spain

8. Instituto Cugat, Hospital Quirónsalud, 08023 Barcelona, Spain

9. Mutualidad de Futbolistas Españoles, Delegación Catalana, 08010 Barcelona, Spain

Abstract

The treatment of chondral and osteochondral defects is challenging. These types of lesions are painful and progress to osteoarthritis over time. Tissue engineering offers tools to address this unmet medical need. The use of an autologous cartilage construct consisting of hyaline cartilage chips embedded in plasma rich in growth factors (PRGF) has been proposed as a therapeutic alternative. The purpose of this study was to dig into the potential mechanisms behind the in vitro remodelling process that might explain the clinical success of this technique and facilitate its optimisation. Chondrocyte viability and cellular behaviour over eight weeks of in vitro culture, type II collagen synthesis, the dual delivery of growth factors by hyaline cartilage and PRGF matrix, and the ultrastructure of the construct and its remodelling were characterised. The main finding of this research is that the cartilage fragments embedded in the three-dimensional PRGF scaffold contain viable chondrocytes that are able to migrate into the fibrin network, proliferate and synthesise extracellular matrix after the second week of in vitro culture. The characterization of this three-dimensional matrix is key to unravelling the molecular kinetics responsible for its efficacy.

Funder

Basque Country Government

Publisher

MDPI AG

Subject

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

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