Enhance osteogenesis of BCP bioceramics by autocrine induced membrane to bone regeneration.

Xiaohua Wang, Yuehao Wu, Aiai Li, Zhao Xie, Wei Zhi, Wei Lin, Guanglin Wang
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Abstract

This study investigates a novel strategy combining biphasic calcium phosphate (BCP) bioceramics with autocrine induced membranes (IMs) to enhance osteogenesis and vascularization for bone regeneration. Highly bioactive, porous BCP scaffolds (porosity: 68.1 ± 1.7%; pore size: 526-1000 µm) were combined with autocrine membranes in a rat femoral defect model. The optimal membrane formation time was determined by ELISA analysis of osteogenic and angiogenic factors (BMP-2, VEGF, ANG-II, PEG-2, FGF-2). Material characterization included SEM, XRD, and mercury intrusion porosimetry.In vivobone regeneration was evaluated via micro-CT, histological analysis, and osteogenic marker expression (Alp, Bmp2, Col-1, Ocn, Opn, Runx2). The 4-week autocrine membrane exhibited superior osteogenic and angiogenic activity. Combined with BCP scaffolds, it accelerated bone regeneration, with micro-CT and histology showing significant new bone formation by 3 weeks and near-complete defect repair by 6 weeks. Osteogenic gene/protein expression (Alp, Bmp2, Col-1, Ocn, Opn, Runx2) was consistently higher in the BCP + IM group (BCP bioceramics with autocrine IMs) when compared to that of the BCP group and the control group, corroborating histological outcomes. Autocrine IMs significantly enhance the osteogenic efficacy of BCP bioceramics, demonstrating promise for weight-bearing bone defect repair.

自分泌诱导膜促进BCP生物陶瓷骨再生。
目的: ;本研究探讨了一种将双相磷酸钙(BCP)生物陶瓷与自分泌诱导膜结合的新策略,以促进骨生成和血管形成,促进骨再生。方法: ;高生物活性,多孔BCP支架(孔隙率:69.4%;孔径:526 ~ 1000µm)与自分泌膜联合用于大鼠股骨缺损模型。采用ELISA法分析成骨和血管生成因子(BMP-2、VEGF、ANG-II、PEG-2、FGF-2),确定最佳成膜时间。材料表征包括SEM, XRD和压汞孔隙度测定。通过显微ct、组织形态学和成骨标志物表达(ALP、BMP2、col - 1、OCN、Opn、Runx2)评估体内骨再生。结果:4周的自分泌膜表现出优异的成骨和血管生成活性。与BCP支架联合使用,加速骨再生,micro-CT和组织学显示3周明显的新骨形成,6周缺损接近完全修复。与BCP组和空白组相比,BCP+IM组的成骨基因/蛋白表达(ALP、BMP2、col - 1、OCN、Opn、Runx2)持续升高,证实了组织学结果。结论:自分泌诱导膜显著增强了BCP生物陶瓷的成骨效果,显示了BCP生物陶瓷修复体重骨缺损的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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