Related Experiment Video
Updated: Jul 28, 2026

Use of Human Perivascular Stem Cells for Bone Regeneration
Published on: May 25, 2012
Comparing "intra operative" tissue engineering strategies for the repair of craniofacial bone defects
V Hivernaud1, F Grimaud2, J Guicheux3
1Inserm, UMR-S 1229, R-MeS Lab, Nantes, 44042, France; Université de Nantes, UMR-S 1229 R-MeS Lab, UFR odontologie, Nantes, 44042, France; STEMCIS, Besançon, France.
Background:
In craniofacial reconstruction, the gold standard procedure for bone regeneration is the autologous bone graft (BG). However, this procedure requiring bone harvesting is a source of morbidity. Bone substitutes, such as biphasic calcium phosphate (BCP), represent an interesting alternative but are not sufficient for bone healing in hypoplastic conditions. In such conditions, osteoprogenitors are essential to provide osteoinduction. Previous studies have shown that BCP associated with total bone marrow (TBM) provides same bone reconstruction as bone graft in a rat model of calvaria defect. Furthermore, adipose tissue stromal vascular fraction (SVF) seems to be another promising source of osteoprogenitor cells that can be used intra-operatively. This study aimed to combine, intra-operative BCP-based bone tissue engineering strategies with TBM or SVF from human sources.
Methods:
5 mm critical-size calvaria defects were performed in 18 nude rat. The defects were filled with intra-operative bone tissue engineering procedures: human BG, human TBM + BCP, human SVF + BCP and, rat TBM + BCP. Animals were sacrificed 8 weeks after implantation and calvaria were processed for histological and radiological examinations. Implanted cells were labelled with a fluorochrome.
Results:
Micro-CT analysis revealed partial repair of bone defect. Only hBG significantly succeeded in healing the defect (43.1%). However, low rate of newly formed bone tissue was observed in all tissue engineering conditions (hTBM, hSVF, ratTBM).
Discussion:
The lack of bone formation observed in this study could possibly be attributed to the model.
Conclusion:
This study combined with a literature analysis show the stringency of the nude rat calvaria model in term of bone regeneration.
More Related Videos
13:16Computed Tomography and Optical Imaging of Osteogenesis-angiogenesis Coupling to Assess Integration of Cranial Bone Autografts and Allografts
Published on: December 22, 2015
04:17The Establishment of Calvarial Suture-Bony Composite Defects in Rats: A Standardized Model for Suture-Regenerative Therapy Investigation
Published on: May 10, 2024