College of Chemical Engineering, Nanjing University of Science and Technology, 210094, Nanjing, China.
J Mater Sci Mater Med. 2019 Mar 27;30(4):41. doi: 10.1007/s10856-019-6244-8.
For cartilage tissue repairing, it remains a key challenge to design implant materials with antibacterial activity, proper degradation rate and mechanical property. In this research, antibacterial nanodiamonds (QND, QND-Ag) modified acrylate-terminated polyurethanes (APU) were prepared. By the addition of nanocomposites, the crystallinity of modified APU obviously increased, which indicates a strong interaction between NDs and APU. Tensile and compression tests were carried out to evaluate the improved mechanical properties. Compared with APU, APU(10%PEG)/QND-Ag possessed the increased modulus and strength, a nevertheless slight decrease in elongation at break. Due to the dual actions of contact-killing of cationic polymers and release-killing of the Ag NPs, QND-Ag-containing polyurethane showed excellent antibacterial activity against Staphylococcus aureus. Moreover, APU containing polyethylene glycol showed a significant increase in degradability rates. Consequently, owing to the dual effect of crystallinity and hydrophilicity, our modified APU exhibited the proper degradation rate adaptable to the healing rate of cartilage tissue. Furthermore, the CCK-8 results demonstrated that synthesized samples were low toxic. Therefore, APU(10%PEG)/QND-Ag holds great promise for the application of cartilage tissue repairing.
对于软骨组织修复,设计具有抗菌活性、适当降解率和机械性能的植入材料仍然是一个关键挑战。本研究中,制备了纳米金刚石(QND、QND-Ag)改性的丙烯酸酯封端的聚氨酯(APU)。通过添加纳米复合材料,改性 APU 的结晶度明显增加,表明 NDs 与 APU 之间存在强烈的相互作用。通过拉伸和压缩试验评估了改善的机械性能。与 APU 相比,APU(10%PEG)/QND-Ag 具有更高的模量和强度,而断裂伸长率略有降低。由于阳离子聚合物的接触杀灭作用和 Ag NPs 的释放杀灭作用,含 QND-Ag 的聚氨酯对金黄色葡萄球菌表现出优异的抗菌活性。此外,含聚乙二醇的 APU 显示出明显提高的降解速率。因此,由于结晶度和亲水性的双重作用,我们改性的 APU 表现出适当的降解率,适应软骨组织的愈合速度。此外,CCK-8 结果表明合成样品的毒性较低。因此,APU(10%PEG)/QND-Ag 在软骨组织修复应用中具有广阔的前景。