Xia Xianping, Wang Yun, Cai Shuizhou, Xie Changsheng, Zhu Changhong
Department of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, PR China.
Contraception. 2009 Jan;79(1):65-70. doi: 10.1016/j.contraception.2008.07.018. Epub 2008 Sep 10.
Copper/low-density polyethylene (Cu/LDPE) nanocomposite intrauterine device (IUD) is an implanted medicinal device that must be sterilized before use. Sterilization processes act either chemically or physically, leading to a lethal change in the structure or function of organic macromolecules in microorganisms. Given the nature of their action, sterilization might also attack the macromolecules of polymers by the same mechanisms, resulting in changes in surface functional groups and in the internal structure of the polymer. If sterilization leads to changes in surface functional groups and in the internal structure of the LDPE matrix, which will influence the mechanical property and cupric ions release rate of novel Cu/LDPE nanocomposite IUDs, potential clinical application will be limited. Therefore, it is necessary to study the influence of ethylene oxide sterilization on the potential clinical application of novel Cu/LDPE nanocomposite IUDs.
The influence of ethylene oxide sterilization on the internal structure, surface functional groups, mechanical property and cupric ions release rate of novel Cu/LDPE nanocomposite IUDs was studied using differential scanning calorimetry, attenuated total reflection Fourier transform infrared spectroscopy, tensile testing and absorbance measurement.
Ethylene oxide sterilization did not have any influence on the internal structure, surface functional groups, mechanical property and cupric ions release rate of novel Cu/LDPE nanocomposite intrauterine devices.
Ethylene oxide sterilization will not affect the potential application of novel Cu/LDPE nanocomposite IUDs.
铜/低密度聚乙烯(Cu/LDPE)纳米复合宫内节育器(IUD)是一种植入式医疗器械,使用前必须进行灭菌。灭菌过程通过化学或物理方式起作用,导致微生物中有机大分子的结构或功能发生致命变化。鉴于其作用性质,灭菌也可能通过相同机制攻击聚合物的大分子,导致表面官能团和聚合物内部结构发生变化。如果灭菌导致LDPE基体的表面官能团和内部结构发生变化,这将影响新型Cu/LDPE纳米复合宫内节育器的机械性能和铜离子释放速率,其潜在的临床应用将受到限制。因此,有必要研究环氧乙烷灭菌对新型Cu/LDPE纳米复合宫内节育器潜在临床应用的影响。
采用差示扫描量热法、衰减全反射傅里叶变换红外光谱法、拉伸试验和吸光度测量等方法,研究环氧乙烷灭菌对新型Cu/LDPE纳米复合宫内节育器内部结构、表面官能团、机械性能和铜离子释放速率的影响。
环氧乙烷灭菌对新型Cu/LDPE纳米复合宫内节育器的内部结构、表面官能团、机械性能和铜离子释放速率没有任何影响。
环氧乙烷灭菌不会影响新型Cu/LDPE纳米复合宫内节育器的潜在应用。