School of Chemical, Materials, & Biomedical Engineering, University of Georgia, Athens, Georgia 30602, United States.
ACS Appl Bio Mater. 2022 Jul 18;5(7):3396-3404. doi: 10.1021/acsabm.2c00358. Epub 2022 Jul 6.
Bacterial infections are a hurdle to the application of medical devices, and in the United States alone, more than one million infection cases are reported annually from indwelling medical devices. Infections not only affect the function of medical devices but also risk the lives and health of patients. Nitric oxide (NO) has been used as an antibacterial therapy that kills bacteria without causing resistance and provides many therapeutic effects such as anti-inflammation, antithrombosis, and angiogenesis. Silicone oils have been widely utilized in manufacturing consumer goods, healthcare products, and medical products. Specifically, liquid silicone oils are used as a medical lubricant that creates lubricated interfaces between medical devices and the exterior physiological environment to improve the performance of medical devices. Herein, we report the first primary -nitrosothiol-based NO-releasing silicone oil (RSNO-Si) that exhibits proactive antibacterial effects. -nitrosothiol silicone oils (RSNO-Si) were synthesized and the NO payloads ranged from 34.0 to 603.9 μM. The increased NO payload induced higher-viscosity RSNO-Si oils, as RSNO0.1-Si, RSNO0.5-Si, and RSNO1-Si had viscosities of 12.8 ± 0.1 cP, 32.0 ± 0.2 cP, and 35.1 ± 0.3 cP, respectively. RSNO-Si-SR interfaces were fabricated by infusing silicone rubber (SR) in RSNO-Si oil, and the resulting RSNO-Si-SR disks demonstrated NO release without NO donor leaching. RSNO0.1-Si-SR, RSNO0.5-Si-SR, and RSNO1-Si-SR exhibited maximum NO flux at 0.8, 6.5, and 21.5 × 10 mol cm min in 24 h, respectively. RSNO-Si-SR disks also demonstrated 97.45, 95.40, and 96.08% of inhibition against in a 4 h bacterial adhesion assay. Considering the easy synthesis, simple fabrication of non-leaching NO-releasing interfaces, tunable payloads, NO flux levels, and antimicrobial effects, RSNO-Si oils exhibited their potential use as platform chemicals for creating antimicrobial medical device surfaces and other antibacterial materials.
细菌感染是医疗器械应用的一个障碍,仅在美国,每年就有超过 100 万例与留置医疗器械相关的感染病例报告。感染不仅会影响医疗器械的功能,还会危及患者的生命和健康。一氧化氮(NO)已被用作一种抗菌疗法,可以杀死细菌而不会产生耐药性,并提供许多治疗效果,如抗炎、抗血栓形成和血管生成。硅油已广泛应用于消费品、医疗保健产品和医疗器械的制造。具体来说,液体硅油可用作医疗器械与外部生理环境之间的医用润滑剂,以改善医疗器械的性能。在这里,我们报告了第一个基于伯亚硝硫醇的一氧化氮释放硅油(RSNO-Si),它具有主动抗菌作用。合成了伯亚硝硫醇硅油(RSNO-Si),NO 载量范围为 34.0 至 603.9 μM。增加的 NO 载量导致更高粘度的 RSNO-Si 油,例如 RSNO0.1-Si、RSNO0.5-Si 和 RSNO1-Si 的粘度分别为 12.8 ± 0.1 cP、32.0 ± 0.2 cP 和 35.1 ± 0.3 cP。通过将硅橡胶(SR)注入 RSNO-Si 油中制备了 RSNO-Si-SR 界面,得到的 RSNO-Si-SR 圆盘在没有 NO 供体浸出的情况下表现出 NO 释放。RSNO0.1-Si-SR、RSNO0.5-Si-SR 和 RSNO1-Si-SR 在 24 小时内的最大 NO 通量分别为 0.8、6.5 和 21.5 × 10 mol cm min。RSNO-Si-SR 圆盘在 4 小时细菌黏附试验中对 的抑制率分别为 97.45%、95.40%和 96.08%。考虑到易于合成、简单制备无浸出的 NO 释放界面、可调节的载量、NO 通量水平和抗菌效果,RSNO-Si 油表现出作为平台化学品的潜力,可用于制造抗菌医疗器械表面和其他抗菌材料。