Artola A, Goñi I, Gil J, Ginebra P, Manero J M, Gurruchaga M
Dpto. Ciencia y Tecnología de Polímeros, POLYMAT (Institute of Polymeric Materials), Facultad de Química, Universidad del País Vasco, Apdo. 1072, 20080 San Sebastián, Spain.
J Biomed Mater Res B Appl Biomater. 2003 Jan 15;64(1):44-55. doi: 10.1002/jbm.b.10511.
As part of the search for an alternative to inorganic radiopaque agents, this work studies the possibility of modifying bone cement formulations by incorporating a radiopaque monomer, that is, 4-iodophenol methacrylate (IPMA), in the liquid phase. The monomer was synthesized in the laboratory, and cements were prepared by the standard method. The influence on the different cement characteristics of various monomer concentrations was studied. It was seen that the setting time decreased as the percentage of monomer increased. The radiopacity attained in the 15 vol.% IPMA formulations was about the same as that for a cement containing 10 wt.% barium sulphate. Dynamic and static mechanical properties were measured. The materials did not show significant differences in the glass transition temperature. However, static mechanical properties showed enhanced compressive strength, tensile strength, and elastic modulus with respect to conventional cements formulated with barium sulphate. Histological studies showed a good response of muscular tissue to implanted specimens.
作为寻找无机不透射线剂替代品工作的一部分,本研究探讨了通过在液相中加入不透射线单体(即甲基丙烯酸4-碘苯酚酯,IPMA)来改性骨水泥配方的可能性。该单体在实验室合成,骨水泥采用标准方法制备。研究了不同单体浓度对骨水泥各种特性的影响。结果表明,随着单体百分比的增加,凝固时间缩短。含15体积%IPMA配方的不透射线程度与含10重量%硫酸钡的骨水泥大致相同。测定了动态和静态力学性能。材料在玻璃化转变温度方面没有显著差异。然而,与用硫酸钡配制的传统骨水泥相比,静态力学性能显示出抗压强度、抗拉强度和弹性模量有所提高。组织学研究表明肌肉组织对植入标本反应良好。