Acceleration of Bone Regeneration Induced by a Soft-Callus Mimetic Material

Publication date

2022-02-24

Authors

Longoni, Alessia
Utomo, LizetteORCID 0000-0003-2214-2344ISNI 0000000493069233
Robinson, Abbie
Levato, R.ISNI 0000000492906546
Rosenberg, Antoine J W P
Gawlitta, Debby

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Clinical implementation of endochondral bone regeneration (EBR) would benefit from the engineering of devitalized cartilaginous constructs of allogeneic origins. Nevertheless, development of effective devitalization strategies that preserves extracellular matrix (ECM) is still challenging. The aim of this study is to investigate EBR induced by devitalized, soft callus-mimetic spheroids. To challenge the translatability of this approach, the constructs are generated using an allogeneic cell source. Neo-bone formation is evaluated in an immunocompetent rat model, subcutaneously and in a critical size femur defect. Living spheroids are used as controls. Also, the effect of spheroid maturation towards hypertrophy is evaluated. The devitalization procedure successfully induces cell death without affecting ECM composition or bioactivity. In vivo, a larger amount of neo-bone formation is observed for the devitalized chondrogenic group both ectopically and orthotopically. In the femur defect, accelerated bone regeneration is observed in the devitalized chondrogenic group, where defect bridging is observed 4 weeks post-implantation. The authors' results show, for the first time, a dramatic increase in the rate of bone formation induced by devitalized soft callus-mimetics. These findings pave the way for the development of a new generation of allogeneic, "off-the-shelf" products for EBR, which are suitable for the treatment of every patient.

Keywords

allogeneic, devitalization, endochondral bone tissue regeneration, mesenchymal stromal cells, orthotopic bone defect, Medicine (miscellaneous), General Chemical Engineering, General Materials Science, Biochemistry, Genetics and Molecular Biology (miscellaneous), General Engineering, General Physics and Astronomy

Citation

Longoni, A, Utomo, L, Robinson, A, Levato, R, Rosenberg, A J W P & Gawlitta, D 2022, 'Acceleration of Bone Regeneration Induced by a Soft-Callus Mimetic Material', Advanced Science, vol. 9, no. 6, 2103284, pp. 1-14. https://doi.org/10.1002/advs.202103284