Demir Oğuz Öznur, Ege Duygu
Institute of Biomedical Engineering, Boğaziçi University, Rasathane St., Kandilli, 34684 İstanbul, Turkey.
Materials (Basel). 2018 Apr 14;11(4):604. doi: 10.3390/ma11040604.
In this study, a novel injectable bone substitute (IBS) was prepared by incorporating a bioceramic powder in a polymeric solution comprising of methylcellulose (MC), gelatin and citric acid. Methylcellulose was utilized as the polymeric matrix due to its thermoresponsive properties and biocompatibility. 2.5 wt % gelatin and 3 wt % citric acid were added to the MC to adjust the rheological properties of the prepared IBS. Then, 0, 20, 30 and 50 wt % of the bioceramic component comprising tetracalcium phosphate/hydroxyapatite (TTCP/HA), dicalcium phosphate dehydrate (DCPD) and calcium sulfate dehydrate (CSD) were added into the prepared polymeric component. The prepared IBS samples had a chewing gum-like consistency. IBS samples were investigated in terms of their chemical structure, rheological characteristics, and mechanical properties. After that, in vitro degradation studies were carried out by measurement of pH and % remaining weight. Viscoelastic characteristics of the samples indicated that all of the prepared IBS were injectable and they hardened at approximately 37 °C. Moreover, with increasing wt % of the bioceramic component, the degradation rate of the samples significantly reduced and the mechanical properties were improved. Therefore, the experimental results indicated that the P50 mix may be a promising candidates to fill bone defects and assist bone recovery for non-load bearing applications.
在本研究中,通过将生物陶瓷粉末掺入由甲基纤维素(MC)、明胶和柠檬酸组成的聚合物溶液中,制备了一种新型可注射骨替代物(IBS)。由于其热响应特性和生物相容性,甲基纤维素被用作聚合物基质。向MC中添加2.5 wt%的明胶和3 wt%的柠檬酸,以调节所制备IBS的流变学性质。然后,将包含磷酸四钙/羟基磷灰石(TTCP/HA)、二水磷酸二钙(DCPD)和二水硫酸钙(CSD)的生物陶瓷组分的0、20、30和50 wt%添加到所制备的聚合物组分中。所制备的IBS样品具有口香糖般的稠度。对IBS样品的化学结构、流变学特性和力学性能进行了研究。之后,通过测量pH值和剩余重量百分比进行体外降解研究。样品的粘弹性特性表明,所有制备的IBS均可注射,且在约37℃时硬化。此外,随着生物陶瓷组分重量百分比的增加,样品的降解速率显著降低,力学性能得到改善。因此,实验结果表明,P50混合物可能是填充骨缺损和辅助非承重应用中骨恢复的有前途的候选材料。