Chen Chiu-Ming, Chen Shen-Mao, Lin Shiou-Fu, Liang Huang-Chien, Wu Chia-Chun
Department of Orthopaedics, Tri-Service General Hospital, National Defense Medical Center, Taipei City 11490, Taiwan.
Department of Pathology, Shuang-Ho Hospital, Taipei Medical University, Taipei City 23561, Taiwan.
Polymers (Basel). 2021 Jul 31;13(15):2552. doi: 10.3390/polym13152552.
The combination of β-tricalcium phosphate (β-TCP) with polycaprolactone (PCL) has been considered a promising strategy for designing scaffolds for bone grafting. This study incorporated PCL with commercially available β-TCP (Osteocera) to fabricate an injectable bone substitute and evaluate the effect of PCL on compressive strength and setting time of the hydraulic cement. The mechanical testing was compliant with the ASTM D695 and ASTM C191-13 standards. Results showed that PCL-TCP composite presented a well-defined architecture with uniform pore distribution and a significant increase in compressive strength compared with β-TCP alone. Eighteen rabbits, each with two surgically created bone defects, were treated using the PCL-TCP composites. The composite materials were resorbed and replaced by newly formed bone tissue. Both PCL-TCP and β-TCP demonstrated equivalent clinical effects on osteoconduction property in terms of the percentage of newly formed bone area measured by histomorphometric analysis. PCL-TCP was proven to be as effective as the commercially available β-TCP scaffold (Osteocera).
β-磷酸三钙(β-TCP)与聚己内酯(PCL)的组合被认为是设计骨移植支架的一种有前景的策略。本研究将PCL与市售的β-TCP(Osteocera)结合,制备了一种可注射骨替代物,并评估了PCL对水硬性水泥抗压强度和凝固时间的影响。力学测试符合ASTM D695和ASTM C191-13标准。结果表明,PCL-TCP复合材料呈现出结构明确、孔隙分布均匀的特点,与单独的β-TCP相比,抗压强度显著提高。18只兔子,每只兔子有两个手术造成的骨缺损,使用PCL-TCP复合材料进行治疗。复合材料被吸收并被新形成的骨组织取代。通过组织形态计量分析测量新形成骨面积的百分比,PCL-TCP和β-TCP在骨传导性能方面表现出等效的临床效果。事实证明,PCL-TCP与市售的β-TCP支架(Osteocera)一样有效。