Incorporating Microbial Stimuli for Osteogenesis in a Rabbit Posterolateral Spinal Fusion Model

Publication date

2025-05

Authors

Rahmani, Nada
Duits, Anneli
Croes, Michiel
Lock, Olivia
Gawlitta, DebbyORCID 0000-0001-9622-3062ISNI 0000000396738562
Weinans, HarrieORCID 0000-0002-2275-6170ISNI 0000000393288658
Kruyt, Moyo C.ORCID 0000-0002-5983-5251ISNI 0000000387798520

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Article

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taverne

Abstract

Autologous bone grafts are commonly used to repair defects in skeletal tissue, however, due to their limited supply there is a clinical need for alternatives. Synthetic ceramics present a promising option but currently lack biological activity to stimulate bone regeneration. One potential approach to address this limitation is the incorporation of immunomodulatory agents. In this study, we investigate the application of microbial stimuli to stimulate bone formation. Three different microbial stimuli were incorporated in a biphasic calcium phosphate (BCP) ceramic: Bacille Calmette-Guérin (BCG), gamma-irradiated Staphylococcus aureus (γi-S. aureus), or γi-Candida albicans (γi-C. Albicans). The constructs were then implanted in both a rabbit posterolateral spinal fusion (PLF) and an intramuscular implant model for 10 weeks and compared to a nonstimulated control construct. For the PLF model, the formation of a bony bridge was evaluated by manual palpation, micro computed tomography, and histology. While complete fusion was not observed, the BCG condition was most promising with higher manual stiffness and almost twice as much bone volume in the central fusion mass compared to the control (9 ± 4.4% bone area vs. 4.6 ± 2.3%, respectively). Conversely, the γi-S. aureus or γi-C. albicans appeared to inhibit bone formation (1.4 ± 1.4% and 1.2 ± 0.6% bone area). Bone induction was not observed in any of the intramuscular implants. This study indicates that incorporating immunomodulatory agents in ceramic bone substitutes can affect bone formation, which can be positive when selected carefully. The readily available and clinically approved BCG showed promising results, which warrants further research for clinical translation.

Keywords

bacteria, bone regenerative medicine, ceramic, fungi, mycobacterium, osteoimmunomodulation, Taverne, Bioengineering, Biomaterials, Biochemistry, Biomedical Engineering

Citation

Rahmani, N R, Duits, A, Croes, M, Lock, O, Gawlitta, D, Weinans, H & Kruyt, M C 2025, 'Incorporating Microbial Stimuli for Osteogenesis in a Rabbit Posterolateral Spinal Fusion Model', Tissue Engineering - Part A, vol. 31, no. 9-10, pp. 387-397. https://doi.org/10.1089/ten.tea.2024.0064