Park Kijun, Kim Seunghoi, Jo Yejin, Park Jae, Kim Inwoo, Hwang Sooyoung, Lee Yeontaek, Kim So Yeon, Seo Jungmok
School of Electronic and Electronic Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Center for Biomaterials, Biomedical Research Institute, Korea Institute of Science and Technologies, Seoul, 02792, Republic of Korea.
Bioact Mater. 2022 Aug 6;25:555-568. doi: 10.1016/j.bioactmat.2022.07.019. eCollection 2023 Jul.
Implantable biomedical devices require an anti-biofouling, mechanically robust, low friction surface for a prolonged lifespan and improved performance. However, there exist no methods that could provide uniform and effective coatings for medical devices with complex shapes and materials to prevent immune-related side effects and thrombosis when they encounter biological tissues. Here, we report a lubricant skin (L-skin), a coating method based on the application of thin layers of bio-adhesive and lubricant-swellable perfluoropolymer that impart anti-biofouling, frictionless, robust, and heat-mediated self-healing properties. We demonstrate biocompatible, mechanically robust, and sterilization-safe L-skin in applications of bioprinting, microfluidics, catheter, and long and narrow medical tubing. We envision that diverse applications of L-skin improve device longevity, as well as anti-biofouling attributes in biomedical devices with complex shapes and material compositions.
可植入生物医学设备需要具有抗生物污染、机械坚固、低摩擦的表面,以延长使用寿命并提高性能。然而,目前尚无方法可为形状和材料复杂的医疗设备提供均匀有效的涂层,以防止它们在接触生物组织时产生免疫相关副作用和血栓形成。在此,我们报告了一种润滑皮肤(L-皮肤),这是一种基于应用生物粘合剂和可膨胀润滑剂的全氟聚合物薄层的涂层方法,可赋予抗生物污染、无摩擦、坚固和热介导的自愈特性。我们在生物打印、微流体、导管以及细长医疗管的应用中展示了生物相容性好、机械坚固且可安全灭菌的L-皮肤。我们设想,L-皮肤的多种应用将提高设备寿命,以及具有复杂形状和材料成分的生物医学设备的抗生物污染特性。