Wang Lei, Zhu Jing, Jiang Xiaorui, Li Shouyi
Ophthalmology Center, Affiliated Hospital of Weifang Medical University, Weifang, China.
School of Laboratory Animal & Shandong Laboratory Animal Center, Institute of Laboratory Animal Science, Shandong First Medical University & Shandong Academy of Medical Sciences, Shandong, China.
Open Life Sci. 2025 Aug 28;20(1):20251152. doi: 10.1515/biol-2025-1152. eCollection 2025.
This article aims to explore the effects of salmon demineralized bone matrix (DBM) combined with recombinant human bone morphogenetic protein-2 (rhBMP-2) on bone formation. Salmon DBM, with its high water absorption capacity, was used to construct a composite material with rhBMP-2 under pH 7.0 and optimal temperature conditions. The compound effects of the composite material were evaluated by measuring its mechanical strength, microstructure, and biocompatibility through scanning electron microscopy and cell culture experiments. The effect of rhBMP-2 within the composite was assessed by fluorescence imaging. rhBMP-2 was successfully loaded onto salmon DBM and released slowly. The composite material's structure, strength, and cell compatibility were unaffected. The compressive strength was 2.87 MPa, slightly higher than DBM alone (2.27 MPa). imaging showed slow release of rhBMP-2, with more than 50% fluorescence intensity remaining after 3 days. Cytotoxicity tests showed no harmful effects, with over 95% cell growth. Rats with rhBMP-2-loaded DBM had higher serum calcium (1,569 ± 114 mg/L) than those with DBM alone (1,349 ± 110 mg/L, < 0.05). Histology showed more bone growth and calcium deposition around rhBMP-2-loaded DBM. Loading rhBMP-2 onto DBM does not alter its physical, chemical, or biological properties; it enhances the osteogenic potential of DBM.
本文旨在探讨鲑鱼脱矿骨基质(DBM)与重组人骨形态发生蛋白-2(rhBMP-2)联合应用对骨形成的影响。鲑鱼DBM具有高吸水能力,在pH 7.0和最佳温度条件下用于与rhBMP-2构建复合材料。通过扫描电子显微镜和细胞培养实验测量其机械强度、微观结构和生物相容性,评估该复合材料的复合效果。通过荧光成像评估复合材料中rhBMP-2的作用。rhBMP-2成功负载到鲑鱼DBM上并缓慢释放。复合材料的结构、强度和细胞相容性未受影响。抗压强度为2.87MPa,略高于单独的DBM(2.27MPa)。成像显示rhBMP-2缓慢释放,3天后荧光强度仍保留超过50%。细胞毒性测试显示无有害影响,细胞生长率超过95%。负载rhBMP-2的DBM大鼠血清钙(1569±114mg/L)高于单独使用DBM的大鼠(1349±110mg/L,P<0.05)。组织学显示负载rhBMP-2的DBM周围有更多的骨生长和钙沉积。将rhBMP-2负载到DBM上不会改变其物理、化学或生物学性质;它增强了DBM的成骨潜力。