Stokes K, McVenes R, Anderson J M
Medtronic, Inc., Minneapolis, MN 55432-3576, USA.
J Biomater Appl. 1995 Apr;9(4):321-54. doi: 10.1177/088532829500900402.
Polyurethanes have unique mechanical and biologic properties that make them ideal for many implantable devices. They are subject to some in vivo degradation mechanisms, however. Polyester polyurethanes are subject to hydrolytic degradation and are no longer used in long-term implanted devices. Polyether polyurethanes, while hydrolytically stable, are subject to oxidative degradation in several forms, including environmental stress cracking and metal ion oxidation. Mineralization is also known to occur. A new polycarbonate polyurethane has superior biostability in early in vivo qualification tests compared to the polyether polyurethanes, including no evidence of hydrolysis, ESC or MIO.
聚氨酯具有独特的机械和生物学特性,使其成为许多可植入设备的理想材料。然而,它们会受到一些体内降解机制的影响。聚酯型聚氨酯会发生水解降解,不再用于长期植入设备。聚醚型聚氨酯虽然具有水解稳定性,但会以多种形式发生氧化降解,包括环境应力开裂和金属离子氧化。矿化现象也已知会发生。与聚醚型聚氨酯相比,一种新型聚碳酸酯聚氨酯在早期体内鉴定试验中具有更好的生物稳定性,包括没有水解、环境应力开裂或金属离子氧化的迹象。