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使用重组骨形态发生蛋白-2 再生的骨中,生物性磷灰石 c 轴取向的程度而非骨矿物质密度控制着力学功能。

Degree of biological apatite c-axis orientation rather than bone mineral density controls mechanical function in bone regenerated using recombinant bone morphogenetic protein-2.

机构信息

Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University, Osaka, Japan.

出版信息

J Bone Miner Res. 2013 May;28(5):1170-9. doi: 10.1002/jbmr.1825.

DOI:10.1002/jbmr.1825
PMID:23184575
Abstract

The aim of the present study was to assess the bone regeneration process in defects introduced into rabbit long bones, which were regenerated with controlled release of recombinant bone morphogenetic protein-2 (rBMP-2). The orientation of the biological apatite (BAp) c-axis and bone mineral density (BMD) were compared as predictors of bone mechanical function. A 20-mm-long defect was introduced in rabbit ulnas, and 17 µg of rBMP-2 was controlled-released into the defect using a biodegradable gelatin hydrogel as the carrier. In the bone regeneration process, two characteristic phases may have been governed by different factors. First, new bone formation actively occurred, filling the bone defect with newly formed bone tissue and increasing the BMD. This process was regulated by the strong osteoinductive capacity of rBMP-2. Second, after filling of the defect and moderate BMD restoration, preferential BAp c-axis orientation began to increase, coincident with initiation of remodeling. In addition, the BAp c-axis orientation, rather than BMD, was strongly correlated with Young's modulus, an important index of bone mechanical function, particularly in the later stage of bone regeneration. Thus, preferential BAp c-axis orientation is a strong determinant and predictor of the mechanical function of tissue-engineered bone. Therefore, analysis of BAp preferential c-axis orientation in addition to measurement of BMD is crucial in assessment of bone mechanical function.

摘要

本研究旨在评估在兔子长骨中引入的缺陷中使用骨形态发生蛋白-2(rBMP-2)的控释来进行骨再生的过程。比较生物磷灰石(BAp)c 轴的取向和骨矿物质密度(BMD)作为骨力学功能的预测因子。在兔子尺骨中引入 20mm 长的缺陷,并使用可生物降解的明胶水凝胶作为载体将 17µg 的 rBMP-2 控释到缺陷中。在骨再生过程中,两个特征阶段可能由不同的因素控制。首先,新骨形成活跃发生,用新形成的骨组织填充骨缺陷并增加 BMD。这个过程受 rBMP-2 的强烈成骨诱导能力调节。其次,在缺陷填充和中等 BMD 恢复后,开始增加优先的 BAp c 轴取向,与重塑的开始一致。此外,BAp c 轴取向而不是 BMD 与杨氏模量强烈相关,杨氏模量是骨力学功能的重要指标,特别是在骨再生的后期。因此,优先的 BAp c 轴取向是组织工程骨力学功能的重要决定因素和预测因子。因此,除了测量 BMD 之外,分析 BAp 优先 c 轴取向对于评估骨力学功能至关重要。

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