Balaji Ananad Bellam, Ratnam Chantara Thevy, Khalid Mohammad, Walvekar Rashmi
1 Faculty of Engineering, Department of Chemical and Environmental Engineering, 69861 University of Nottingham Malaysia Campus , Semenyih, Selangor, Malaysia.
2 Radiation Processing Technology Division, Malaysian Nuclear Agency, Bangi, Selangor, Malaysia.
J Biomater Appl. 2018 Mar;32(8):1049-1062. doi: 10.1177/0885328217750476. Epub 2018 Jan 3.
The effect of electron beam radiation on ethylene-propylene diene terpolymer/polypropylene blends is studied as an attempt to develop radiation sterilizable polypropylene/ethylene-propylene diene terpolymer blends suitable for medical devices. The polypropylene/ethylene-propylene diene terpolymer blends with mixing ratios of 80/20, 50/50, 20/80 were prepared in an internal mixer at 165°C and a rotor speed of 50 rpm/min followed by compression molding. The blends and the individual components were radiated using 3.0 MeV electron beam accelerator at doses ranging from 0 to 100 kGy in air and room temperature. All the samples were tested for tensile strength, elongation at break, hardness, impact strength, and morphological properties. After exposing to 25 and 100 kGy radiation doses, 50% PP blend was selected for in vivo studies. Results revealed that radiation-induced crosslinking is dominating in EPDM dominant blends, while radiation-induced degradation is prevailing in PP dominant blends. The 20% PP blend was found to be most compatible for 20-60 kGy radiation sterilization. The retention in impact strength with enhanced tensile strength of 20% PP blend at 20-60 kGy believed to be associated with increased compatibility between PP and EPDM along with the radiation-induced crosslinking. The scanning electron micrographs of the fracture surfaces of the PP/EPDM blends showed evidences consistent with the above contentation. The in vivo studies provide an instinct that the radiated blends are safe to be used for healthcare devices.
研究了电子束辐射对乙丙三元共聚物/聚丙烯共混物的影响,旨在开发适用于医疗器械的可辐射灭菌的聚丙烯/乙丙三元共聚物共混物。将混合比例为80/20、50/50、20/80的聚丙烯/乙丙三元共聚物共混物在165℃、转子转速为50转/分钟的密炼机中制备,然后进行压缩成型。将共混物和各组分在空气中、室温下使用3.0兆电子伏电子束加速器以0至100千戈瑞的剂量进行辐射。对所有样品进行拉伸强度、断裂伸长率、硬度、冲击强度和形态性能测试。在暴露于25和100千戈瑞辐射剂量后,选择50%聚丙烯共混物进行体内研究。结果表明,在乙丙三元共聚物占主导的共混物中,辐射诱导的交联占主导,而在聚丙烯占主导的共混物中,辐射诱导的降解占主导。发现20%聚丙烯共混物最适合20 - 60千戈瑞的辐射灭菌。20%聚丙烯共混物在20 - 60千戈瑞时冲击强度保持不变且拉伸强度增强,这被认为与聚丙烯和乙丙三元共聚物之间相容性增加以及辐射诱导的交联有关。聚丙烯/乙丙三元共聚物共混物断裂表面的扫描电子显微镜照片显示的证据与上述内容一致。体内研究表明,辐射后的共混物用于医疗保健器械是安全的。