Liu Sihao, Zhao Xia, Han Yuemei, Lin Quankui
National Engineering Research Center of Ophthalmology and Optometry, School of Biomedical Engineering, School of Ophthalmology and Optometry, Eye Hospital, Wenzhou Medical University, Wenzhou 325027, China.
National Engineering Research Center of Ophthalmology and Optometry, School of Biomedical Engineering, School of Ophthalmology and Optometry, Eye Hospital, Wenzhou Medical University, Wenzhou 325027, China.
Colloids Surf B Biointerfaces. 2025 Jan;245:114333. doi: 10.1016/j.colsurfb.2024.114333. Epub 2024 Oct 23.
Intraocular lens (IOL) implantation surgery is the most effective treatment for cataract. However, glistening formed by the incoming liquid microvacuoles can significantly damage postoperative visual quality after prolonged implantation, for which there is still lack of effective clinical treatment. In this study, inspired by the amazing water-repellency of natural superhydrophobic surface, a functionalized IOL material modified with the superhydrophobic and transparent coating was prepared using layer-by-layer electrostatic self-assembly technique combined with fluorination. After the alternate deposition of multiple cationic/anionic polyelectrolytes and silica nanoparticles of varying sizes on IOL materials, the constructed multilayered films with special surface roughness were further fluorinated to reduce surface energy. In addition to its excellent superhydrophobicity and transparency, this multilayered coating could efficiently eliminate the glistening formation of IOL under accelerated condition in vitro. Furthermore, the in vitro experiments with water droplets, cells, and bacteria suggested the superior antiadhesion property of such coating modified materials. The biocompatibility evaluation, both in vitro and in vivo, demonstrated the great biocompatibility of the materials modified with superhydrophobic and transparent coating. Therefore, this multilayered coating with excellent superhydrophobic and transparent characteristics can provide an available approach aiming at anti-glistening and antiadhesion of IOL materials. Advances in the fabrication process of surface coating with specific functions will enhance the practical application and clinical success of modified IOLs.
人工晶状体(IOL)植入手术是治疗白内障最有效的方法。然而,长时间植入后,进入的液体微泡形成的闪光会严重损害术后视觉质量,对此仍缺乏有效的临床治疗方法。在本研究中,受天然超疏水表面惊人的拒水性启发,采用层层静电自组装技术结合氟化处理,制备了一种用超疏水透明涂层修饰的功能化IOL材料。在IOL材料上交替沉积多种阳离子/阴离子聚电解质和不同尺寸的二氧化硅纳米颗粒后,对构建的具有特殊表面粗糙度的多层膜进一步氟化以降低表面能。除了具有优异的超疏水性和透明度外,这种多层涂层在体外加速条件下能有效消除IOL的闪光形成。此外,对水滴、细胞和细菌的体外实验表明,这种涂层修饰材料具有优异的抗粘附性能。体外和体内的生物相容性评价均表明,超疏水透明涂层修饰的材料具有良好的生物相容性。因此,这种具有优异超疏水和透明特性的多层涂层可为IOL材料的抗闪光和抗粘附提供一种可行的方法。具有特定功能的表面涂层制造工艺的进步将提高改性IOL的实际应用和临床成功率。