Enhanced Osteoinduction and Osteogenesis Promotion by Bovine Freeze-Dried Bone Combined with Rehmannia glutinosa Libosch Polysaccharide on Bone Defect and Fracture Repair in Rats

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Wanhao Zhang, Ruizhou Guo, Xiantong Hu, Liwei Han, Jing Zhang, Wenjie Yue, Junwei Zong, Li Li* and Gang Xu*, 
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Abstract

Freeze-dried bone (FDB) scaffolds present several advantages, including mechanical strength, osteoconductive properties, and abundant availability. This study aimed to investigate the osteogenic effects and underlying mechanisms of bovine FDB combined with Rehmannia glutinosa Libosch polysaccharide (RGP) on bone defects and fractures in rats. The characteristics of the scaffolds were analyzed through observational studies, scanning electron microscopy imaging, mechanical strength testing, cytotoxicity assessments, and in vitro RGP release. Subsequently, femoral condyle and radial defect models mimicking bone defect and fracture were used to evaluate the scaffolds’ repair capabilities for cortical and cancellous bone defects. Results obtained at the eighth week showed that FDB&RGP combination outperformed FDB alone in various parameters, indicating superior repair potential for both bone types, as well as for bone defects and fractures. The combination scaffold exhibited enhanced osteoinductive properties, rendering it more suitable for bone defect repair. The osteogenic mechanisms of FDB&RGP were investigated using alkaline phosphatase (ALP) and Alizarin Red S staining, as well as assessments of ALP, OCN, and COL1 activities, and the activation of the BMP-9/GSK3β signaling pathway. The results indicate that FDB&RGP enhances osteo-differentiation, with the BMP-9/GSK3β pathway potentially serving a pivotal role. This study establishes a foundation for the future clinical application of xenograft FDB&RGP.

牛冻干骨联合地黄多糖对大鼠骨缺损及骨折修复的促骨作用
冻干骨(FDB)支架具有多种优点,包括机械强度、骨导电性和丰富的可用性。本研究旨在探讨牛FDB联合地黄多糖(RGP)对大鼠骨缺损和骨折的成骨作用及其机制。通过观察研究、扫描电镜成像、机械强度测试、细胞毒性评估和体外RGP释放分析支架的特性。随后,采用模拟骨缺损和骨折的股骨髁和桡骨缺损模型来评估支架对皮质骨和松质骨缺损的修复能力。第八周的结果显示,FDB和RGP联合治疗在各种参数上都优于FDB单独治疗,这表明FDB和RGP联合治疗对两种骨类型以及骨缺损和骨折都有更好的修复潜力。复合支架表现出增强的骨诱导性能,使其更适合骨缺损修复。通过碱性磷酸酶(ALP)和茜素红S染色,评估ALP、OCN和COL1活性,以及BMP-9/GSK3β信号通路的激活,研究fdbrgp的成骨机制。结果表明,fdbrgp促进骨分化,其中BMP-9/GSK3β通路可能起关键作用。本研究为异种移植fdbrgp的临床应用奠定了基础。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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