Segmental defect healing in the presence or absence of recombinant human BMP2: Novel insights from a rat model

Author:

Panos Joseph A.1234ORCID,Coenen Michael J.12,Nagelli Christopher V.12,McGlinch Erin B.1235,Atasoy‐Zeybek Aysegul12,Lopez De Padilla Consuelo12,De la Vega Rodolfo E.126,Evans Christopher H.12

Affiliation:

1. Rehabilitation Medicine Research Center, Mayo Clinic Rochester Minnesota USA

2. Musculoskeletal Gene Therapy Research Laboratory, Mayo Clinic Rochester Minnesota USA

3. Graduate School of Biomedical Sciences, Mayo Clinic Rochester Minnesota USA

4. Medical Scientist Training Program, Mayo Clinic Rochester Minnesota USA

5. Virology and Gene Therapy Graduate Program, Mayo Clinic Rochester Minnesota USA

6. Department of Cell Biology‐Inspired Tissue Engineering MERLN Institute Maastricht The Netherlands

Abstract

AbstractThis study defined and compared the course of native, impaired and growth factor‐stimulated bone regeneration in a rat femoral defect model. A mid‐diaphyseal defect with rigid internal fixation was surgically created in the right femur of male Fischer rats and serially analyzed over 36 weeks. Native bone regeneration was modeled using a sub‐critical, 1 mm size defect, which healed uneventfully. Critical size defects of 5 mm were used to analyze impaired bone regeneration. In a third group, the 5 mm defects were filled with 11 µg of recombinant human bone morphogenetic protein 2 (rhBMP2) impregnated onto an absorbable collagen sponge, modeling its clinical use. Native bone regeneration was characterized by endochondral ossification with progressive remodeling to ultimately resemble intact femora. An endochondral response was also observed under conditions of impaired bone regeneration, but by week 8 medullary capping occurred with fibrofatty consolidation of the tissue within the defect, resembling an atrophic non‐union. rhBMP2 treatment was associated with prolonged inflammatory cytokine expression and rapid intramembranous bone formation occurring with reduced expression of cartilage‐associated collagens. Between weeks 4 and 36, rhBMP2‐treated bones demonstrated decreased trabecular number and increased trabecular separation, which resulted in inferior mechanical properties compared with bones that healed naturally. Clinical Significance: Recombinant human bone morphogenetic protein 2 (rhBMP2) is used clinically to promote healing of long bones. Our data suggest that it drives intramembraneous ossification producing an inferior regenerate that deteriorates with time. Clinical outcomes would be improved by technologies favoring endochondral regenerative ossification.

Funder

National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

Wiley

Subject

Orthopedics and Sports Medicine

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Bringing gene therapy to regenerative medicine;Molecular Therapy - Methods & Clinical Development;2023-09

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