Univ Lyon, INSA-Lyon, LGEF, EA682, F-69621, Villeurbanne, France.
Groupement Hospitalier Edouard Herriot, 69003, Lyon, France.
Sci Rep. 2020 May 29;10(1):8805. doi: 10.1038/s41598-020-65893-2.
Electroactive polymers (EAP) are one of the latest generations of flexible actuators, enabling new approaches to propulsion and maneuverability. Among them, poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene/chlorotrifluoroethylene), abbreviated terpolymer, with its multifunctional sensing and actuating abilities as well as its impressive electrostrictive behavior, especially when being doped with an plasticizer, has been demonstrated to be a good candidate for the development of low-cost flexible guidewire tip for endovascular surgery. To minimize the possibility of bacterial, fungal, or viral disease transmission, all medical instruments (especially components made from polymers) must be sterilized before introduction into the patient. Gamma/beta (γ/β) irradiation is considered to be one of the most efficient techniques for targeted reduction of microbials and viruses under low temperature, often without drastic alterations in device properties. However, radiation may cause some physical and chemical changes in polymers. A compromise is required to ensure sufficient radiation for microbial deactivation but minimal radiation to retain the material's properties. The main idea of this study aims at assessing the electromechanical performances and thermal/dielectric properties of β-irradiated terpolymer-based sterilization treatment. Ionizing β-rays did not cause any significant risk to the neat/plasticized terpolymers, confirming the reliability of such electrostrictive materials for medical device development.
电活性聚合物(EAP)是最新一代的柔性致动器之一,为推进和机动性提供了新的方法。其中,聚(偏二氟乙烯-三氟乙烯-氯氟乙烯/三氟氯乙烯),简称三元共聚物,具有多功能传感和致动能力以及令人印象深刻的电致伸缩行为,特别是在掺杂增塑剂时,已被证明是开发低成本的血管内手术用柔性导丝尖端的良好候选材料。为了最大限度地降低细菌、真菌或病毒疾病传播的可能性,所有医疗器械(特别是由聚合物制成的部件)在引入患者之前都必须进行消毒。γ/β(γ/β)辐照被认为是在低温下靶向减少微生物和病毒的最有效技术之一,通常不会对设备性能产生剧烈改变。然而,辐射可能会导致聚合物发生一些物理和化学变化。需要进行折衷,以确保微生物失活所需的辐照剂量充足,但保留材料性能所需的辐照剂量最小。本研究的主要目的是评估β辐照三元共聚物基灭菌处理的机电性能和热/介电性能。电离β射线对未增塑和增塑的三元共聚物没有造成任何显著风险,这证实了这种电致伸缩材料用于医疗器械开发的可靠性。