Hydroxyapatite–Silicon Scaffold Promotes Osteogenic Differentiation of CGF Primary Cells

Author:

Giannotti Laura1,Di Chiara Stanca Benedetta1ORCID,Nitti Paola2ORCID,Spedicato Francesco1ORCID,Damiano Fabrizio1ORCID,Demitri Christian2ORCID,Calabriso Nadia3ORCID,Carluccio Maria Annunziata3ORCID,Palermo Andrea4ORCID,Ferrante Franco5,Siculella Luisa1ORCID,Stanca Eleonora1ORCID

Affiliation:

1. Department of Biological and Environmental Sciences and Technologies, University of Salento, 73100 Lecce, Italy

2. Department of Engineering for Innovation, Campus Ecotekne, University of Salento, Via per Monteroni, 73100 Lecce, Italy

3. National Research Council (CNR) Institute of Clinical Physiology (IFC), 73100 Lecce, Italy

4. Implant Dentistry College of Medicine and Dentistry, Birmingham B4 6BN, UK

5. Specialist in Oral Surgery, Private Practitioner, 73100 Lecce, Italy

Abstract

The application of scaffolding materials together with stem cell technologies plays a key role in tissue regeneration. Therefore, in this study, CGF (concentrated growth factor), which represents an autologous and biocompatible blood-derived product rich in growth factors and multipotent stem cells, was used together with a hydroxyapatite and silicon (HA-Si) scaffold, which represents a very interesting material in the field of bone reconstructive surgery. The aim of this work was to evaluate the potential osteogenic differentiation of CGF primary cells induced by HA-Si scaffolds. The cellular viability of CGF primary cells cultured on HA-Si scaffolds and their structural characterization were performed by MTT assay and SEM analysis, respectively. Moreover, the matrix mineralization of CGF primary cells on the HA-Si scaffold was evaluated through Alizarin red staining. The expression of osteogenic differentiation markers was investigated through mRNA quantification by real-time PCR. We found that the HA-Si scaffold was not cytotoxic for CGF primary cells, allowing their growth and proliferation. Furthermore, the HA-Si scaffold was able to induce increased levels of osteogenic markers, decreased levels of stemness markers in these cells, and the formation of a mineralized matrix. In conclusion, our results suggest that HA-Si scaffolds can be used as a biomaterial support for CGF application in the field of tissue regeneration.

Funder

Ministero dello Sviluppo Economico project PON-MISE OSTEO-CARE

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

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