Zhang Chen, Ru Yixian, You Jinchao, Lin Runyi, Chen Shihao, Qi Yi, Li Dejing, Zhang Cheng, Qiu Zhenli
School of Materials and Chemistry Engineering, Minjiang University, Fuzhou 350108, China.
School of Pharmaceutical Sciences, Jilin University, Changchun 130021, China.
Polymers (Basel). 2024 Nov 30;16(23):3379. doi: 10.3390/polym16233379.
This study focuses on the development of polymer-bioglass composite bone scaffolds for the treatment of bone defects. PCL particles and 45s5 bioglass powder were employed as raw materials to fabricate PCL/45s5 composite wires with mass fractions of 5 wt%, 10 wt%, and 20 wt% via the twin-screw extrusion method. A cylindrical porous model was established using 3D modeling software, and a porous composite scaffold was constructed through the melt deposition manufacturing process. The macroscopical characterization of composite stock and composite powder was analyzed. The melt flow rate, water contact angle, elastic modulus, in vitro degradation rate, and antibacterial property of composite scaffold were measured. The experimental results showed that the incorporation of 45s5 bioglass into PCL material gave the composite better antibacterial properties, effectively reduced the flow rate of the material, increased the hydrophobicity of the material, and improved the rigidity and biocompatibility of the PCL material. This study offers initial insights into the use of synthetic bone tissue engineering scaffolds for clinical bone repair treatments.
本研究聚焦于用于治疗骨缺损的聚合物-生物玻璃复合骨支架的研发。采用聚己内酯(PCL)颗粒和45S5生物玻璃粉末作为原材料,通过双螺杆挤出法制备质量分数分别为5 wt%、10 wt%和20 wt%的PCL/45S5复合丝。利用三维建模软件建立圆柱形多孔模型,并通过熔融沉积制造工艺构建多孔复合支架。分析了复合坯料和复合粉末的宏观特性。测定了复合支架的熔体流动速率、水接触角、弹性模量、体外降解速率和抗菌性能。实验结果表明,在PCL材料中加入45S5生物玻璃可使复合材料具有更好的抗菌性能,有效降低材料的流动速率,增加材料的疏水性,并提高PCL材料的刚性和生物相容性。本研究为合成骨组织工程支架用于临床骨修复治疗提供了初步见解。