Nuffer Alicia, Evrard Robin, Schubert Thomas, Lengelé Benoit, Veyssiere Alexis, Kadlub Natacha, Boisson Jean
Service de chirurgie maxillo-faciale, chirurgie orale et reconstructrice, CHU de Caen, Caen, France.
Faculté de médecine, Université de Caen, Caen, France.
PLoS One. 2025 Jun 2;20(6):e0322901. doi: 10.1371/journal.pone.0322901. eCollection 2025.
Massive bone allograft decellularized by perfusion is a solution for large bone defect reconstructions. Perfusion-based decellularization offers a solution by removing cellular components while preserving the non-immunogenic matrix. This study evaluates the in vivo integration and mechanical properties of perfusion-decellularized bone grafts compared to "fresh-frozen" grafts, both before implantation and after explantation. Standardized porcine femoral grafts were categorized into non-irradiated, irradiated, and explanted groups, with half undergoing perfusion decellularization. Biomechanical tests, including screw pull-out test, compression, and 3-point bending test, were performed. Results indicate that while decellularization increases graft brittleness, Vickers indentation and compression tests showed no significant differences between groups. In our study, decellularization reduced the mechanical strength of allografts both before and after implantation. However, since the risk of rupture occurred only under mechanical loads exceeding the physiological range, perfusion-decellularized bone grafts remain a valid strategy for bone repair.
通过灌注脱细胞的大块骨移植是大骨缺损重建的一种解决方案。基于灌注的脱细胞通过去除细胞成分同时保留非免疫原性基质提供了一种解决方案。本研究评估了与“新鲜冷冻”移植物相比,灌注脱细胞骨移植物在植入前和取出后的体内整合情况和力学性能。将标准化的猪股骨移植物分为未辐照、辐照和取出组,每组一半进行灌注脱细胞处理。进行了生物力学测试,包括螺钉拔出试验、压缩试验和三点弯曲试验。结果表明,虽然脱细胞会增加移植物的脆性,但维氏压痕试验和压缩试验显示各组之间无显著差异。在我们的研究中,脱细胞降低了植入前后同种异体移植物的机械强度。然而,由于破裂风险仅在超过生理范围的机械负荷下发生,灌注脱细胞骨移植物仍然是骨修复的有效策略。