Kim Tae Ho, Hong Yu Ri, Lim Jeong Ok, Oh Chang-Wug
Bio-Medical Research Institute, Kyungpook National University Hospital, Daegu, Korea.
Joint Institute for Regenerative Medicine, Kyungpook National University, Daegu, Korea.
Clin Orthop Surg. 2025 Apr;17(2):340-345. doi: 10.4055/cios24323. Epub 2025 Mar 14.
Bone substitutes such as hydroxyapatite (HA) ceramic and recombinant bone morphogenetic protein-2 (BMP-2) are essential in treating bone defects. However, the challenges of controlled and localized BMP-2 delivery necessitate the development of advanced bone graft substitutes. This study introduces and evaluates an innovative, ready-to-use bone substitute employing 3-dimensional-printed poly-L-lactic acid (PLLA) scaffolds combined with BMP-2 to enhance bone regeneration efficiency.
We conducted a comparative study using C57BL/6 mice to evaluate the efficacy of rhBMP-2-coated PLLA scaffolds against traditional HA-based bone graft materials. The PLLA scaffolds were coated with varying concentrations of BMP-2 using an alginate-catechol method. Bone regeneration was assessed through micro-computed tomography (CT) imaging and histological analysis 4 weeks after implantation. The statistical significance of bone mass and formation differences across groups was determined using Student -test and analysis of variance.
Micro-CT analysis revealed substantial bone formation in the group with PLLA scaffolds containing 0.1% BMP-2, exhibiting a bone volume ratio of 11.1% ± 2.8%, significantly higher than all other groups ( = 0.008). Histological analysis corroborated these findings, showing dense collagen deposition and active osteoblast presence in this group, indicating enhanced bone regeneration.
The novel PLLA scaffold with alginate-catechol-coated BMP-2 significantly enhances bone regeneration compared to traditional bone graft materials. This innovative approach holds promising potential for clinical applications in orthopedics, particularly for treating bone defects.
骨替代物如羟基磷灰石(HA)陶瓷和重组骨形态发生蛋白-2(BMP-2)在治疗骨缺损中至关重要。然而,控制和局部递送BMP-2面临挑战,这就需要开发先进的骨移植替代物。本研究介绍并评估了一种创新的即用型骨替代物,它采用三维打印的聚-L-乳酸(PLLA)支架结合BMP-2来提高骨再生效率。
我们使用C57BL/6小鼠进行了一项对比研究,以评估rhBMP-2包被的PLLA支架相对于传统HA基骨移植材料的疗效。采用藻酸盐-儿茶酚法将不同浓度的BMP-2包被在PLLA支架上。植入4周后,通过微型计算机断层扫描(CT)成像和组织学分析评估骨再生情况。使用学生t检验和方差分析确定各组骨量和形成差异的统计学意义。
微型CT分析显示,含有0.1%BMP-2的PLLA支架组有大量骨形成,骨体积比为11.1%±2.8%,显著高于所有其他组(P = 0.008)。组织学分析证实了这些发现,该组显示出密集的胶原沉积和活跃的成骨细胞存在,表明骨再生增强。
与传统骨移植材料相比,新型藻酸盐-儿茶酚包被BMP-2的PLLA支架显著增强了骨再生。这种创新方法在骨科临床应用中具有广阔的前景,特别是在治疗骨缺损方面。