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使用肝素/聚阳离子共凝聚体缓释系统,通过临界尺寸颅骨骨缺损模型比较 5 种 BMP 的骨再生潜力。

The use of heparin/polycation coacervate sustain release system to compare the bone regenerative potentials of 5 BMPs using a critical sized calvarial bone defect model.

机构信息

Linda and Mitch Hart Center for Regenerative and Personalized Medicine, Steadman Philippon Research Institute, Vail, CO, 81657, USA.

Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY, 14853, USA.

出版信息

Biomaterials. 2022 Sep;288:121708. doi: 10.1016/j.biomaterials.2022.121708. Epub 2022 Aug 14.

Abstract

Nonunion following bone fracture and segmental bone defects are challenging clinical conditions. To combat this clinical dilemma, development of new bone tissue engineering therapies using biocompatible materials to deliver bone growth factors is desirable. This aim of this study is to use a heparin/polycation coacervate sustained-release platform to compare 5 bone morphogenetic proteins (BMPs) for promoting bone defect healing in a critical sized calvarial defect model. The in vitro 3D osteogenic pellet cultures assays demonstrated that BMPs 2, 4, 6, 7 and 9 all enhanced mineralization in vitro compared to the control group. BMP2 resulted in higher mineralized volume than BMP4 and BMP6. All BMPs and the control group activated the pSMAD5 signaling pathway and expressed osterix (OSX). The binding of BMP2 with coacervate significantly increased the coacervate average particle size. BMP2, 4, 6, & 7 bound to coacervate significantly increased the Zeta potential of the coacervate while BMP9 binding showed insignificant increase. Furthermore, using a monolayer culture osteogenic assay, it was found that hMDSCs cultured in the coacervate BMP2 osteogenic medium expressed higher levels of RUNX2, OSX, ALP and COX-2 compared to the control and BMPs 4, 6, 7 & 9. Additionally, the coacervate complex can be loaded with up to 2 μg of BMP proteins for sustained release. In vivo, when BMPs were delivered using the coacervate sustained release system, BMP2 was identified to be the most potent BMP promoting bone regeneration and regenerated 10 times of new bone than BMPs 4, 6 & 9. BMP7 also stimulated robust bone regeneration when compared to BMPs 4, 6 & 9. The quality of the newly regenerated bone by all BMPs delivered by coacervate is equivalent to the host bone consisting of bone matrix and bone marrow with normal bone architecture. Although the defect was not completely healed at 6 weeks, coacervate sustain release BMPs, particularly BMP2 and BMP7, could represent a new strategy for treatment of bone defects and non-unions.

摘要

骨折后不愈合和节段性骨缺损是具有挑战性的临床情况。为了解决这一临床难题,理想情况下需要使用生物相容性材料开发新的骨组织工程疗法来输送骨生长因子。本研究旨在使用肝素/聚阳离子共凝聚物缓释平台来比较 5 种骨形态发生蛋白(BMPs)在促进临界颅骨缺损模型骨缺损愈合方面的作用。体外 3D 成骨球培养试验表明,与对照组相比,BMPs 2、4、6、7 和 9 均能增强体外矿化。BMP2 导致的矿化体积高于 BMP4 和 BMP6。所有 BMPs 和对照组均激活了 pSMAD5 信号通路并表达了成骨特异性转录因子 2(osterix,OSX)。BMP2 与共凝聚物的结合显著增加了共凝聚物的平均粒径。BMP2、4、6 和 7 与共凝聚物的结合显著增加了共凝聚物的 Zeta 电位,而 BMP9 的结合则没有显著增加。此外,在单层培养成骨试验中发现,在共凝聚物 BMP2 成骨培养基中培养的人骨髓间充质干细胞(hMDSCs)表达的 RUNX2、OSX、ALP 和 COX-2 水平明显高于对照组和 BMPs 4、6、7 和 9。此外,共凝聚物复合物可负载多达 2μg 的 BMP 蛋白以实现持续释放。在体内,当 BMPs 采用共凝聚物持续释放系统递送时,鉴定出 BMP2 是促进骨再生最有效的 BMP,其再生的新骨是 BMPs 4、6 和 9 的 10 倍。与 BMPs 4、6 和 9 相比,BMP7 也能刺激骨再生。通过共凝聚物递送的所有 BMP 再生的新骨的质量与由骨基质和骨髓组成的宿主骨相同,具有正常的骨结构。尽管在 6 周时缺损未完全愈合,但共凝聚物持续释放的 BMPs,特别是 BMP2 和 BMP7,可能为治疗骨缺损和骨不连提供一种新策略。

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