Autologous Marrow Mesenchymal Stem Cell Driving Bone Regeneration in a Rabbit Model of Femoral Head Osteonecrosis

Author:

Mastrolia IleniaORCID,Giorgini Andrea,Murgia AlbaORCID,Loschi Pietro,Petrachi Tiziana,Rasini Valeria,Pinelli Massimo,Pinto Valentina,Lolli Francesca,Chiavelli ChiaraORCID,Grisendi Giulia,Baschieri Maria Cristina,Santis Giorgio De,Catani Fabio,Dominici Massimo,Veronesi Elena

Abstract

Osteonecrosis of the femoral head (ONFH) is a progressive degenerative disease that ultimately requires a total hip replacement. Mesenchymal stromal/stem cells (MSCs), particularly the ones isolated from bone marrow (BM), could be promising tools to restore bone tissue in ONFH. Here, we established a rabbit model to mimic the pathogenic features of human ONFH and to challenge an autologous MSC-based treatment. ON has been originally induced by the synergic combination of surgery and steroid administration. Autologous BM-MSCs were then implanted in the FH, aiming to restore the damaged tissue. Histological analyses confirmed bone formation in the BM-MSC treated rabbit femurs but not in the controls. In addition, the model also allowed investigations on BM-MSCs isolated before (ON-BM-MSCs) and after (ON+BM-MSCs) ON induction to dissect the impact of ON damage on MSC behavior in an affected microenvironment, accounting for those clinical approaches foreseeing MSCs generally isolated from affected patients. BM-MSCs, isolated before and after ON induction, revealed similar growth rates, immunophenotypic profiles, and differentiation abilities regardless of the ON. Our data support the use of ON+BM-MSCs as a promising autologous therapeutic tool to treat ON, paving the way for a more consolidated use into the clinical settings.

Publisher

MDPI AG

Subject

Pharmaceutical Science

Reference61 articles.

1. Konarski, W., Poboży, T., Śliwczyński, A., Kotela, I., Krakowiak, J., Hordowicz, M., and Kotela, A. (2022). Avascular Necrosis of Femoral Head-Overview and Current State of the Art. Public Health, 19.

2. Osteonecrosis of the Femoral Head: Pathophysiology and Current Concepts of Treatment;Petek;EFORT Open Rev.,2019

3. Total THA in Adult Osteonecrosis Related to Sickle Cell Disease;Hernigou;Clin. Orthop. Relat. Res.,2008

4. Causes of Revision after Total Hip Arthroplasty in an Orthopedics and Traumatology Regional Center;Apostu;Orig. Res. Med. Pharm. Rep.,2022

5. Comparison between Concentrated Autologous Bone Marrow Aspirate Transplantation as a Hip Preserving Surgery and Natural Course in Idiopathic Osteonecrosis of the Femoral Head;Tomaru;Cureus,2022

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