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接触镜在日光下释放一氧化氮以减少细菌污染。

Contact Lenses Delivering Nitric Oxide under Daylight for Reduction of Bacterial Contamination.

机构信息

Laboratory of Photochemistry, Department of Drug Sciences, University of Catania, 95124 Catania, Italy.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, 98122 Messina, Italy.

出版信息

Int J Mol Sci. 2019 Jul 31;20(15):3735. doi: 10.3390/ijms20153735.

Abstract

Ocular infection due to microbial contamination is one of the main risks associated with the wearing of contact lens, which demands novel straightforward strategies to find reliable solutions. This contribution reports the preparation, characterization and biological evaluation of soft contact lenses (CL) releasing nitric oxide (NO), as an unconventional antibacterial agent, under daylight exposure. A tailored NO photodonor (NOPD) was embedded into commercial CL leading to doped CL with an excellent optical transparency (transmittance = 100%) at λ ≥ 450 nm. The NOPD results homogeneously distributed in the CL matrix where it fully preserves the photobehavior exhibited in solution. In particular, NO release from the CL and its diffusion in the supernatant physiological solution is observed upon visible light illumination. The presence of a blue fluorescent reporting functionality into the molecular skeleton of the NOPD, which activates concomitantly to the NO photorelease, allows the easy monitoring of the NO delivery in real-time and confirms that the doped CL work under daylight exposure. The NO photoreleasing CL are well-tolerated in both dark and light conditions by corneal cells while being able to induce good growth inhibition of under visible light irradiation. These results may pave the way to further engineering of the CL with NOPD as innovative ocular devices activatable by sunlight.

摘要

由于微生物污染导致的眼部感染是与隐形眼镜佩戴相关的主要风险之一,这需要新颖的简单策略来寻找可靠的解决方案。本研究报告了在日光照射下释放一氧化氮(NO)的软性隐形眼镜(CL)的制备、表征和生物学评价。一种定制的 NO 光供体(NOPD)被嵌入到商业 CL 中,得到了掺杂 CL,在 λ≥450nm 处具有优异的光学透明度(透光率=100%)。NOPD 均匀分布在 CL 基质中,在溶液中完全保留了其光致行为。特别是,在可见光照射下,从 CL 中释放的 NO 及其在生理上清液中的扩散被观察到。NOPD 分子骨架中存在蓝色荧光报告功能,它与 NO 光释放同时激活,允许实时监测 NO 的输送,并证实掺杂 CL 在日光照射下工作。在黑暗和光照条件下,NO 光释放 CL 都被角膜细胞良好耐受,并且能够在可见光照射下诱导良好的生长抑制。这些结果可能为进一步工程学研究铺平道路,将 NOPD 作为可通过阳光激活的新型眼部隐形眼镜设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b9d/6696341/a3a002fd206a/ijms-20-03735-sch001.jpg

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