Indexed metadata

Prefabrication of an Axially Vascularized Bone Graft: Proof of Concept for a BMP-2-Based Cell Free Approach

Pablo Pfister, Gangyu Zhang, Sébastien Pigeot, Adrien Moya, Alexander Haumer, Robert Paillaud, Dirk J. Schaefer, Tarek Ismail, Ivan Martin, Arnaud Scherberich

Source record

Source: Crossref

Published: Sep 17, 2026

DOI: 10.20944/preprints202609.1449.v1

Open original source ↗

Source abstract

Reconstruction of large craniofacial bone defects typically relies on vascularized autografts, but involves donor-site morbidity and limited availability. Tissue-engineered vascularized grafts could address this gap; however, current strategies remain limited by in vitro cell manipulation, regulatory complexity, high costs, and difficult clinical scaling up t. We previously prefabricated a maxillary graft combining devitalized bone matrix (DBM), freshly-isolated human adipose-derived cells, known as the stromal vascular fraction (SVF), and Bone Morphogenetic protein-2 (BMP-2). We tested if cells were essential by developing a cell-free approach with only DBM (SmartBone) and BMP-2. SmartBone blocks were loaded with BMP-2 (60 µg/mL in a fibrin hydrogel) with or without SVF cells and implanted subcutaneously in nude mice for 12 weeks (ectopic model) or combined to an axial arteriovenous (AV) bundle in nude rats (785 mm3) for 2 or 12 weeks (vascularized model). Bone formation was assessed by X-ray tomography and histology. Across both mice and rats, BMP-2 alone was sufficient to generate robust and organized bone, and adding SVF cells provided no additional benefit. In mice, BMP-2 grafts formed lamellar bone with marrow, while grafts without BMP-2 produced only calcified fibrous tissue. Bone and marrow volumes did not differ between BMP-2 and BMP-2+SVF groups (p>0.05). In rats, both conditions showed significant increases in mineralized volume from 2 to 12 weeks (p<0.05). In conclusion, BMP-2 combined to DBM is enough to robustly generate vascularized bone grafts while using off-the-shelf, approved materials and microsurgical prefabrication, providing a simplified, translationally-feasible approach for reconstruction of large bone defects.

Evidence graph

No public relationships recorded yet.

Integrity note: This page is a factual metadata record created by deterministic ingestion. It is not a claim that the work moves a mathematical frontier or has been independently verified.