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用于长骨缺损再生的包裹羟基磷灰石微粒和骨形态发生蛋白-2的海藻酸钠珠:一项初步研究

Alginate Beads Encapsulating Hydroxyapatite Microparticle and BMP-2 for Long Bone Defect Regeneration: A Pilot Study.

作者信息

Lee Seoyun, Park Honghyun, Yun Hui-Suk, Kang Byung-Jae

机构信息

Department of Veterinary Clinical Sciences, College of Veterinary Medicine and Research Institute for Veterinary Science, Seoul National University, Seoul, Republic of Korea.

BK21 FOUR Future Veterinary Medicine Leading Education and Research Center, Seoul National University, Seoul, Republic of Korea.

出版信息

In Vivo. 2025 Mar-Apr;39(2):732-741. doi: 10.21873/invivo.13877.

Abstract

BACKGROUND/AIM: Large bone defects caused by trauma, infection, tumor excision, and non-union fractures are challenging to treat. Mechanical stability, appropriate osteoconductive bone grafts, and osteoinductive growth factors are necessary for bone regeneration in long bone diaphyseal defects. This study aimed to investigate the efficiency of a hybrid bone scaffold formed using hydroxyapatite (HAp) and bone morphogenetic protein (BMP)-2-containing alginate beads, combined with a barrier membrane, in promoting new bone formation in a rabbit radial segmental defect model.

MATERIALS AND METHODS

Nine rabbits were divided into two groups depending on the type of implant: Alginate beads containing HAp microparticles in phosphate-buffered saline (n=5) or BMP-2 (n=4). A 10-mm radial segmental defect was stabilized using a bone plate and screws, wrapped with an absorbable collagen membrane, and filled with alginate beads. Bone healing at the defect site was assessed radiography, micro-computed tomography, and histological analysis after 12 weeks.

RESULTS

The BMP-2/HAp alginate bead group showed significantly increased bone volume, polar moment of inertia, and periosteal callus ossification, along with a decreased fibrous infiltration at the defect site. Conversely, the BMP-2-unloaded HAp bead group exhibited membrane degradation, with no hard callus formation at the defect site. Therefore, HAp- and BMP-2-encapsulating alginate beads provided sufficient osteoconductive and osteoinductive support for long bone defect repair.

CONCLUSION

BMP-2/HAp alginate beads, combined with an appropriate collagen membrane and proper internal fixation, may be an effective treatment strategy for long bone segmental defects.

摘要

背景/目的:由创伤、感染、肿瘤切除和骨折不愈合引起的大骨缺损治疗具有挑战性。机械稳定性、合适的骨传导性骨移植物和骨诱导生长因子对于长骨干骺端缺损的骨再生是必要的。本研究旨在研究使用羟基磷灰石(HAp)和含骨形态发生蛋白(BMP)-2的藻酸盐珠形成的混合骨支架,结合屏障膜,在兔桡骨节段性缺损模型中促进新骨形成的效率。

材料和方法

根据植入物类型将9只兔子分为两组:磷酸盐缓冲盐水中含HAp微粒的藻酸盐珠(n = 5)或含BMP-2的藻酸盐珠(n = 4)。使用接骨板和螺钉固定10毫米的桡骨节段性缺损,用可吸收胶原膜包裹,并用藻酸盐珠填充。12周后通过X线摄影、微计算机断层扫描和组织学分析评估缺损部位的骨愈合情况。

结果

BMP-2/HAp藻酸盐珠组的骨体积、极惯性矩和骨膜骨痂骨化显著增加,同时缺损部位的纤维浸润减少。相反,未加载BMP-2的HAp珠组出现膜降解,缺损部位无硬骨痂形成。因此,包裹HAp和BMP-2的藻酸盐珠为长骨缺损修复提供了足够的骨传导和骨诱导支持。

结论

BMP-2/HAp藻酸盐珠,结合合适的胶原膜和适当的内固定,可能是治疗长骨节段性缺损的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0697/11884489/3f6e69727b8b/in_vivo-39-734-g0001.jpg

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