Drug Delivery Research Group, School of Science, Auckland University of Technology, New Zealand.
Department of Ophthalmology, New Zealand National Eye Centre, Faculty of Medical and Health Sciences, University of Auckland, Auckland, New Zealand.
Int J Pharm. 2021 Apr 15;599:120452. doi: 10.1016/j.ijpharm.2021.120452. Epub 2021 Mar 4.
Drug-eluting bandage contact lenses (BCLs) have been widely studied as an alternative to eye drops due to their ability to increase the drug residence time and bioavailability as well as improve patient compliance. While silicone hydrogel polymers are commonly used in drug-eluting BCLs due to their transparency, mechanical properties and high oxygen permeability, gelatine hydrogels are also clear, flexible and have high oxygen permeability and may therefore be suitable contact lens materials. Moreover, the rheological properties of gelatine hydrogels allow their use as inks in extrusion-based 3D printers, therefore opening the door to a wide range of applications. Drug-loaded gelatine methacryloyl (GelMA) BCLs with different concentrations of poly (ethylene glycol) diacrylate (PEGDA) were prepared using solvent casting and 3D printing. The prepared lenses were characterised for their swelling ratio, in vitro degradation, and drug release properties. The results showed that the incorporation of 10% PEGDA improved the lenses' resistance to handling and protected them during degradation testing, reduced the swelling ratio and prolonged the release of dexamethasone (DEX). Both techniques were deemed suitable to use in the manufacturing of drug-eluting BCLs noting that the optimal formulation may vary according to the preparation technique utilised.
载药绷带接触镜(BCLs)因其能够增加药物滞留时间和生物利用度以及提高患者依从性而被广泛研究作为眼药水的替代品。虽然硅酮水凝胶聚合物由于其透明度、机械性能和高氧气透过率而常用于载药 BCLs,但明胶水凝胶也是透明、柔韧的,具有高氧气透过率,因此可能是合适的接触镜材料。此外,明胶水凝胶的流变性能允许其在挤出式 3D 打印机中用作墨水,从而为各种应用开辟了道路。使用溶剂浇铸和 3D 打印技术制备了具有不同浓度聚乙二醇二丙烯酸酯(PEGDA)的载药明胶甲基丙烯酰(GelMA)BCLs。对制备的镜片进行了溶胀比、体外降解和药物释放性能的表征。结果表明,加入 10%PEGDA 提高了镜片的抗处理能力,并在降解测试中对其进行了保护,降低了溶胀比并延长了地塞米松(DEX)的释放。这两种技术都被认为适合用于制造载药 BCLs,需要注意的是,根据所使用的制备技术,最佳配方可能会有所不同。