首页> 外文期刊>Journal of tissue engineering and regenerative medicine >An analysis of bone regeneration at a segmental bone defect by controlled release of bone morphogenetic protein 2 from a biodegradable sponge composed of gelatin and β-tricalcium phosphate
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An analysis of bone regeneration at a segmental bone defect by controlled release of bone morphogenetic protein 2 from a biodegradable sponge composed of gelatin and β-tricalcium phosphate

机译:从由明胶和β-磷酸三钙组成的可生物降解海绵中控制释放骨形态发生蛋白2来分析节段性骨缺损的骨再生

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摘要

To treat large bone defects is a clinically challenging problem and utilizing tissue engineering technology is an attractive approach for overcoming such a problem. Previously, a biodegradable sponge incorporating bone morphogenic protein-2 (BMP-2), which can control the release of BMP-2 for a prolonged time in an in vivo environment, was reported. In addition, a biodegradable sponge composed of gelatin and β-tricalcium phosphate (βTCP), gelatin-βTCP sponge to develop a more ideal scaffold for enhancing bone regeneration was also created and previously reported. The purpose of this study was to investigate the effectiveness of the gelatin-βTCP sponge for the promotion of bone regeneration in a critical-sized bone defect site in vivo. Apparent bone regeneration was induced by the gelatin sponge incorporating BMP-2 and the gelatin-βTCP sponge with BMP-2 incorporation. In contrast, no apparent bone formation was induced by either the gelatin sponge only or the gelatin-βTCP sponge without BMP-2. To investigate the quality of the regenerated bone, we conducted a biomechanical evaluation with a three-point bending test. We found no significant difference between the gelatin sponge incorporating BMP-2 and the gelatin-βTCP sponge incorporating BMP-2 groups. Incorporation of βTCP into the gelatin sponge was expected to enhance biomechanical strength during the initial bone regeneration. However, our observations showed that the gelatin-βTCP sponge did not significantly improve the quality of regenerated bone from the viewpoint of biomechanical assessment, even though it did not impair the effectiveness of the promotion of bone regeneration by BMP-2 in the bone defect.
机译:治疗大的骨缺损是临床上具有挑战性的问题,并且利用组织工程技术是克服该问题的有吸引力的方法。以前,已经报道了掺入了骨形态发生蛋白2(BMP-2)的生物可降解海绵,其可以在体内环境中长时间控制BMP-2的释放。另外,还创建了由明胶和β-磷酸三钙(βTCP)组成的可生物降解的海绵,即明胶-βTCP海绵,以开发出更理想的支架来增强骨骼再生。本研究的目的是研究明胶-βTCP海绵在体内关键尺寸骨缺损部位促进骨再生的有效性。掺入BMP-2的明胶海绵和掺入BMP-2的明胶-βTCP海绵诱导了明显的骨再生。相反,仅通过明胶海绵或没有BMP-2的明胶-βTCP海绵都不会诱导明显的骨形成。为了研究再生骨的质量,我们进行了三点弯曲试验的生物力学评估。我们发现掺入BMP-2的明胶海绵和掺入BMP-2的明胶-βTCP海绵之间没有显着差异。预计将βTCP掺入明胶海绵中可增强初始骨骼再生过程中的生物力学强度。然而,我们的观察结果表明,从生物力学评估的角度来看,明胶-βTCP海绵并没有显着改善再生骨的质量,即使它并没有削弱BMP-2促进骨缺损促进骨再生的有效性。

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