Seggio Mimimorena, Tessaro André Luiz, Nostro Antonia, Ginestra Giovanna, Graziano Adriana C E, Cardile Venera, Acierno Stefano, Russo Pietro, Catanzano Ovidio, Quaglia Fabiana, Sortino Salvatore
PhotoChemLab, Department of Drug Sciences, University of Catania, I-95125, Italy.
Nucleus of Industrial Innovation, Federal University of Technology - Paraná (UTFPR), UTFPR, CEP 86812-460, Apucarana, Paraná, Brazil.
J Mater Chem B. 2020 Sep 16. doi: 10.1039/d0tb01194k.
We report herein the design, preparation, characterization and biological evaluation of a thermoresponsive gel based on binary mixtures of Pluronic® co-polymers F127 and P123, the latter being covalently functionalized with a nitric oxide (NO) photodonor (NOPD). The weight ratio between the two polymeric components is optimized in order to observe gelation of their saline water solution in the range of 32-35 °C, in order to exploit the therapeutic properties of NO for potential ocular applications. Rheological measurements were performed to evaluate the gelation temperature and, hence, to select a co-polymer mixture specifically appropriate for the reference application. Integration of the NOPD into the polymeric scaffold does not affect its rheological and spectroscopic properties, making it a good absorber of visible light both in solution and in the gel phase. Irradiation of the saline solution of the polymeric components with visible light triggers NO release, which occurs with an efficiency of more than one order of magnitude faster than that observed for the isolated NOPD. The polymeric system fully preserves such photobehavior after gelation as demonstrated by the effective NO photorelease from the gel matrix and its diffusion in the supernatant upon illumination. The gel is well-tolerated in both dark and light conditions by corneal cells, while being able to induce growth inhibition towards Staphylococcus aureus under visible light irradiation and has high moduli which can contribute to an adequate retention time within the eyes.
我们在此报告一种基于普朗尼克®共聚物F127和P123二元混合物的热响应凝胶的设计、制备、表征及生物学评价,后者用一氧化氮(NO)光供体(NOPD)进行了共价功能化。优化了两种聚合物组分之间的重量比,以便观察其盐水溶液在32 - 35°C范围内凝胶化,从而利用NO的治疗特性用于潜在的眼部应用。进行流变学测量以评估凝胶化温度,进而选择特别适合参考应用的共聚物混合物。将NOPD整合到聚合物支架中不会影响其流变学和光谱性质,使其在溶液和凝胶相中都是可见光的良好吸收剂。用可见光照射聚合物组分的盐水溶液会引发NO释放,其释放效率比单独的NOPD观察到的快一个多数量级。凝胶化后聚合物体系完全保留了这种光行为,凝胶基质在光照下有效释放NO并扩散到上清液中就证明了这一点。该凝胶在黑暗和光照条件下对角膜细胞都具有良好的耐受性,同时在可见光照射下能够诱导对金黄色葡萄球菌的生长抑制,并且具有高模量,这有助于在眼内保持足够的停留时间。