Lin Hong-Ru, Wang Shih-Han, Chiang Chia-Chin, Juang Yun-Ching, Yu Fu-Ann, Tsai Liren
a Department of Chemical and Materials Engineering , Southern Taiwan University of Science and Technology , Tainan , Taiwan.
J Biomater Sci Polym Ed. 2015;26(9):534-44. doi: 10.1080/09205063.2015.1034598. Epub 2015 Apr 23.
Hydrogel materials have been widely considered as potential soft tissue replacements because of their high permeability, hydrophilicity, and biocompatibility, as well as their low coefficient of friction. Injectable (thermo-responsive) hydrogels can provide support and cushioning at irregularly shaped disease sites, and are thus suitable for use in treating osteoarthritis or degenerative disc disease. However, while some injectable hydrogels have been proven to sustain human body weight during daily activities, their mechanical properties under harsh dynamic conditions have not been well documented. A specified injectable polyacrylic acid (PAA) hydrogel was prepared for this study. To simulate sudden impacts or unexpected shocks to the PAA hydrogel, the split Hopkinson pressure bar technique was utilized. The dynamic responses of various hydrogels at confined high strain rates (100-2590 s(-1)) were presented. Hydrogel specimens with 3.37, 6.75, and 13.5% acrylic acid (AAc) concentrations were tested in the following three different material conditions: raw, phosphate-buffered saline (PBS) swollen, and PBS swollen with elevated temperature (37 °C). The dynamic bulk moduli of the hydrogels varied from 1.55 to 47.8 MPa depending on the given hydrogel's AAc concentration and swollen condition.
水凝胶材料因其高渗透性、亲水性、生物相容性以及低摩擦系数,而被广泛认为是潜在的软组织替代物。可注射(热响应性)水凝胶能够在形状不规则的患病部位提供支撑和缓冲,因此适用于治疗骨关节炎或椎间盘退变疾病。然而,尽管一些可注射水凝胶已被证明在日常活动中能够承受人体重量,但其在恶劣动态条件下的力学性能尚未得到充分记录。本研究制备了一种特定的可注射聚丙烯酸(PAA)水凝胶。为了模拟对PAA水凝胶的突然撞击或意外冲击,采用了分离式霍普金森压杆技术。给出了各种水凝胶在受限高应变率(100 - 2590 s⁻¹)下的动态响应。对丙烯酸(AAc)浓度分别为3.37%、6.75%和13.5%的水凝胶试样在以下三种不同材料条件下进行了测试:未处理、磷酸盐缓冲盐水(PBS)溶胀以及在37°C温度下PBS溶胀。根据给定水凝胶的AAc浓度和溶胀条件,水凝胶的动态体积模量在1.55至47.8 MPa之间变化。