Department of Orthopedics, Zhongnan Hospital of Wuhan University, Wuhan, 430071, People's Republic of China.
Biomed Mater. 2013 Jun;8(3):035005. doi: 10.1088/1748-6041/8/3/035005. Epub 2013 Mar 26.
True bone ceramic (TBC), obtained by twice sintering fresh bovine cancellous bone at high temperatures, is an osteoconductive and bioactive bone substitute material that exhibits excellent biocompatibility with hard tissue. The authors have previously synthesized a novel BMP-2-related peptide, P24, and found that it could enhance the osteoblastic differentiation of cells. The objective of the present study was to construct a double-modified TBC via mineralization into simulated body fluid and P24 incorporation for enhanced bone formation. In vitro experiments revealed that surface mineralization-modified (SMM) TBC scaffolds demonstrated efficiency for sustained release of P24. The P24/SMM-TBC composite exhibited increased osteogenic activity by cell adhesion rate determination, MTT assay, alkaline phosphatase staining, and calcium nodule staining with alizarin red compared with SMM-TBC and TBC. In vivo studies showed that the P24/SMM-TBC composite scaffold promoted significant bone defect repair, in marked contrast to stand-alone SMM-TBC and TBC, based on the results of radiographic evaluation and histological examination. These findings indicate that SMM-TBC is a good scaffold for the controlled release of P24 and that the P24/SMM-TBC composite could improve the adhesion, proliferation and differentiation of cells and repair bone defects. The double-modified P24/SMM-TBC composite biomaterial shows potential for clinical application in bone tissue engineering.
真骨陶瓷(TBC)是通过两次在高温下烧结新鲜牛松质骨获得的,是一种具有骨诱导性和生物活性的骨替代材料,与硬组织具有极好的生物相容性。作者先前合成了一种新型的 BMP-2 相关肽 P24,并发现它可以增强细胞的成骨分化。本研究的目的是通过矿化到模拟体液中并掺入 P24 来构建双修饰 TBC,以增强骨形成。体外实验表明,表面矿化修饰(SMM)TBC 支架可有效持续释放 P24。与 SMM-TBC 和 TBC 相比,P24/SMM-TBC 复合材料通过细胞黏附率测定、MTT 测定、碱性磷酸酶染色和茜素红钙结节染色显示出增加的成骨活性。体内研究表明,基于影像学评估和组织学检查的结果,P24/SMM-TBC 复合支架可显著促进骨缺损修复,与单独的 SMM-TBC 和 TBC 形成鲜明对比。这些发现表明,SMM-TBC 是 P24 控释的良好支架,P24/SMM-TBC 复合材料可改善细胞的黏附、增殖和分化,并修复骨缺损。双修饰的 P24/SMM-TBC 复合材料生物材料具有在骨组织工程中临床应用的潜力。