Bettin Dieter, Polster Jürgen, Rullkötter Volker, von Versen Rüdiger, Fuchs Susanne
Department of Orthopedic Surgery, University of Münster, Germany.
Acta Orthop Scand. 2003 Aug;74(4):470-5. doi: 10.1080/00016470310017811.
Patellar tendon allografts can be used for anterior cruciate reconstruction to avoid morbidity of autografts on the donor side. Secondary processing of allografts is important for reducing immunological reactions, bacterial contamination and improving storage. We analyzed the effects of processing on the mechanical properties of patellar tendon grafts in 20 sheep. Group I (n = 10) was deep-frozen at -80 degrees C. Group II (n = 10) was processed by a lipid extraction/ freeze-drying method, including iodoacetic acid disinfection. The contralateral tendons, freeze-dried by dehydration in a vacuum at -50 degrees C for 3 hours, served as controls. We measured failure stress: group I (53, SD 14 MPa), control (26, SD 15 MPa) (p = 0.04); group II (49, SD 13 MPa), control (28, SD 5 MPa) (p = 0.08). Failure strain, normalized stiffness, and energy to failure were similar in the groups. Our method of extended processing did not change the properties of the deep-frozen patellar tendons. Therefore in vivo experiments can be used when studying the effects of transplantation on mechanical properties.
髌腱同种异体移植物可用于前交叉韧带重建,以避免自体移植物供体部位的并发症。同种异体移植物的二次处理对于减少免疫反应、细菌污染及改善储存很重要。我们分析了处理对20只绵羊髌腱移植物力学性能的影响。第一组(n = 10)在-80℃深度冷冻。第二组(n = 10)采用脂质提取/冻干法处理,包括碘乙酸消毒。对侧肌腱在-50℃真空脱水3小时冻干作为对照。我们测量了破坏应力:第一组(53,标准差14MPa),对照组(26,标准差15MPa)(p = 0.04);第二组(49,标准差13MPa),对照组(28,标准差5MPa)(p = 0.08)。各组的破坏应变、归一化刚度和破坏能量相似。我们的延长处理方法并未改变深度冷冻髌腱的性能。因此,在研究移植对力学性能的影响时可进行体内实验。