Zhang Zheng, Kuijer Roel, Bulstra Sjoerd K, Grijpma Dirk W, Feijen Jan
Institute for Biomedical Technology (BMTI) and Department of Polymer Chemistry and Biomaterials, Faculty of Science and Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Biomaterials. 2006 Mar;27(9):1741-8. doi: 10.1016/j.biomaterials.2005.09.017. Epub 2005 Oct 10.
The in vivo and in vitro degradation behavior of poly(trimethylene carbonate) (PTMC) polymers with number average molecular weights of 69 x 10(3), 89 x 10(3), 291 x 10(3) and 457 x 10(3)g/mol (respectively abbreviated as PTMC(69), PTMC(89), PTMC(291) and PTMC(457)) was investigated in detail. PTMC rods (3mm in diameter and 4mm in length) implanted in the femur and tibia of rabbits degraded by surface erosion. The mass loss of high molecular weight PTMC(457) specimens was 60wt% in 8 wks, whereas the mass loss of the lower molecular weight PTMC(89) specimens in the same period was 3 times lower. PTMC discs of different molecular weights immersed in lipase solutions (lipase from Thermomyces lanuginosus) degraded by surface erosion as well. The mass and thickness of high molecular weight PTMC(291) discs decreased linearly in time with an erosion rate of 6.7 microm/d. The erosion rate of the lower molecular weight PTMC(69) specimens was only 1.4mum/d. It is suggested that the more hydrophilic surface of the PTMC(69) specimens prevents the enzyme from acquiring a (hyper)active conformation. When PTMC discs were immersed in media varying in pH from 1 to 13, the non-enzymatic hydrolysis was extremely slow for both the high and low molecular weight samples. It can be concluded that enzymatic degradation plays an important role in the surface erosion of PTMC in vivo.
详细研究了数均分子量分别为69×10³、89×10³、291×10³和457×10³g/mol的聚碳酸三亚甲酯(PTMC)聚合物(分别简称为PTMC(69)、PTMC(89)、PTMC(291)和PTMC(457))的体内和体外降解行为。植入兔股骨和胫骨的PTMC棒(直径3mm,长度4mm)通过表面侵蚀降解。高分子量PTMC(457)样品在8周内的质量损失为60wt%,而同期低分子量PTMC(89)样品的质量损失则低3倍。浸泡在脂肪酶溶液(来自嗜热栖热菌的脂肪酶)中的不同分子量的PTMC圆盘也通过表面侵蚀降解。高分子量PTMC(291)圆盘的质量和厚度随时间呈线性下降,侵蚀速率为6.7μm/d。低分子量PTMC(69)样品的侵蚀速率仅为1.4μm/d。有人认为,PTMC(69)样品更亲水的表面阻止了酶获得(超)活性构象。当PTMC圆盘浸泡在pH值从1到13变化的介质中时,高分子量和低分子量样品的非酶水解都极其缓慢。可以得出结论,酶促降解在PTMC体内表面侵蚀中起重要作用。