Brach del Prever E, Crova M, Costa L, Dallera A, Camino G, Gallinaro P
Clinica Ortopedica, University of Turin, Italy.
Biomaterials. 1996 May;17(9):873-8. doi: 10.1016/0142-9612(96)83282-0.
The chemical characterization of 19 retrieved ultra-high-molecular-weight polyethylene tibial plateaux, six new ones and one raw bar was performed by means of infrared spectroscopy. The surface and bulk oxidation and biodegradation indexes were calculated. The raw bar has a measurable oxidation, which increases on the bulk and on the surfaces of the new plateaux. In the retrieved plateaux, the average oxidation index increases further both on the bulk and on the surfaces; the worse values were present on the worn area. Similar results were found for the biodegradation index. The data show that the biotic in vivo degradation is promoted by the oxidation present on the new plateaux and that it occurs through a different mechanism, abiotic thermal-, photo-, gamma-radiation oxidation, evaluated by the oxidation index.
通过红外光谱法对19个回收的超高分子量聚乙烯胫骨平台、6个新的胫骨平台和1根原材料棒进行了化学表征。计算了表面和整体的氧化及生物降解指数。原材料棒存在可测量的氧化现象,这种氧化在新平台的整体和表面上有所增加。在回收的平台中,整体和表面的平均氧化指数进一步升高;磨损区域的氧化指数值更差。生物降解指数也得到了类似结果。数据表明,新平台上存在的氧化促进了体内生物降解,并且生物降解是通过一种不同的机制发生的,即通过氧化指数评估的非生物热、光、伽马辐射氧化。