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聚乳酸-聚乙二醇/羟基磷灰石复合材料对骨形态发生蛋白-2在骨再生中活性的增强作用

Potentiation of the activity of bone morphogenetic protein-2 in bone regeneration by a PLA-PEG/hydroxyapatite composite.

作者信息

Kaito Takashi, Myoui Akira, Takaoka Kunio, Saito Naoto, Nishikawa Masataka, Tamai Noriyuki, Ohgushi Hajime, Yoshikawa Hideki

机构信息

Department of Orthopaedic Surgery, Osaka University Graduate School of Medicine, 2-2 Yamadaoka, Suita, Osaka, 565-0871, Japan.

出版信息

Biomaterials. 2005 Jan;26(1):73-9. doi: 10.1016/j.biomaterials.2004.02.010.

Abstract

Bone morphogenetic proteins (BMPs) are biologically active molecules capable of inducing new bone formation, and show potential for clinical use in bone defect repair. However, an ideal system for delivering BMPs that can potentiate their bone-inducing ability and provide initial mechanical strength and scaffold for bone ingrowth has not yet been developed. In this study, to construct a carrier/scaffold system for BMPs, we combined two biomaterials: interconnected-porous calcium hydroxyapatite ceramics (IP-CHA), and the synthetic biodegradable polymer poly D,L,-lactic acid-polyethyleneglycol block co-polymer (PLA-PEG). We used a rabbit radii model to evaluate the bone-regenerating efficacy of rhBMP-2/PLA-PEG/IP-CHA composite. At 8 weeks after implantation, all bone defects in groups treated with 5 or 20 microg of BMP were completely repaired with sufficient strength. Furthermore, using this carrier scaffold system, we reduced the amount of BMP necessary for such results to about a tenth of the amount needed in previous studies, probably due to the superior osteoconduction ability of IP-CHA and the optimal drug delivery system provided by PLA-PEG, inducing new bone formation in the interconnected pores. The present findings indicate that the synthetic biodegradable polymer/IP-CHA composite is an excellent combination carrier/scaffold delivery system for rhBMP-2, and that it strongly promotes the clinical effects of rhBMP-2 in bone tissue regeneration.

摘要

骨形态发生蛋白(BMPs)是能够诱导新骨形成的生物活性分子,在骨缺损修复的临床应用中显示出潜力。然而,尚未开发出一种理想的用于递送BMPs的系统,该系统既能增强其骨诱导能力,又能为骨长入提供初始机械强度和支架。在本研究中,为构建一种用于BMPs的载体/支架系统,我们将两种生物材料结合在一起:相互连通的多孔羟基磷灰石陶瓷(IP-CHA)和合成可生物降解聚合物聚D,L-乳酸-聚乙二醇嵌段共聚物(PLA-PEG)。我们使用兔桡骨模型来评估重组人骨形态发生蛋白-2/PLA-PEG/IP-CHA复合材料的骨再生效果。植入后8周,用5或20微克BMP治疗的组中的所有骨缺损均以足够的强度完全修复。此外,使用这种载体支架系统,我们将获得此结果所需的BMP量减少至先前研究所需量的约十分之一,这可能是由于IP-CHA具有卓越的骨传导能力以及PLA-PEG提供的最佳药物递送系统,从而在相互连通的孔隙中诱导新骨形成。目前的研究结果表明,合成可生物降解聚合物/IP-CHA复合材料是一种用于重组人骨形态发生蛋白-2的出色的组合载体/支架递送系统,并且它能强烈促进重组人骨形态发生蛋白-2在骨组织再生中的临床效果。

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