首页> 外文期刊>Journal of biomedical materials research, Part A >Porous beta tricalcium phosphate scaffolds used as a BMP-2 delivery system for bone tissue engineering
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Porous beta tricalcium phosphate scaffolds used as a BMP-2 delivery system for bone tissue engineering

机译:β-磷酸三钙多孔支架用作骨组织工程的BMP-2输送系统

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Macroporous beta tricalcium phosphate (β-TCP) scaffolds were evaluated as potential carriers and delivery systems for bone morphogenetic protein-2 (BMP-2). Chemical etching was performed to increase the available surface and thus the protein loading. X-ray diffraction and infrared spectrocopy analyses confirmed the preparation of pure β-TCP scaffolds. Scanning electron microscopy revealed interconnected porosity (64%) and a microporous surface after chemical etching. Scaffolds loaded with 30 and 15 lg of BMP-2 were implanted respectively into the back muscles and into femoral defects (condyle and diaphysis) of rabbits for 4 weeks. Histological observations confirmed the activity of the BMP-2 released from the scaffolds. Intramuscularly, bone was formed within the BMP-2-loaded scaffold pores. In the bone defects, the effect of released BMP-2 was similarly noticeable, as evaluated by histomorphometry. The incorporation of BMP-2 resulted in an amount of newly formed bone that was 1.3 times higher than with unloaded scaffolds. The implant site, however, did not have an effect on bone formation as no statistical differences were measured between cortical (diaphysis) and trabecular (condyle) defects. These results indicate the suitability of chemically etched b-TCP scaffolds as BMP-2 carriers, in the context of bone regeneration.
机译:大孔β磷酸三钙(β-TCP)支架被评估为骨形态发生蛋白2(BMP-2)的潜在载体和递送系统。进行化学蚀刻以增加可用表面并因此增加蛋白质负载量。 X射线衍射和红外光谱分析证实了纯β-TCP支架的制备。扫描电子显微镜显示在化学蚀刻后互连的孔隙率(64%)和微孔表面。将分别装有30和15 lg BMP-2的支架植入兔子的背部肌肉和股骨缺损(con和骨干)中,持续4周。组织学观察证实从支架释放的BMP-2的活性。肌肉内,在BMP-2支架孔内形成骨骼。在骨缺损中,如通过组织形态计量学评估的那样,释放的BMP-2的作用同样明显。 BMP-2的掺入导致新形成的骨量比无支架的骨量高1.3倍。然而,植入物部位对骨形成没有影响,因为在皮质(骨干)和小梁(con突)缺损之间未测量到统计学差异。这些结果表明,在骨再生的背景下,化学蚀刻的b-TCP支架适合作为BMP-2载体。

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