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Useful In Vitro Techniques to Evaluate the Mucoadhesive Properties of Hyaluronic Acid-Based Ocular Delivery Systems

机译:有用的体外技术以评估透明质酸为基础的眼部递送系统的粘膜粘附性能

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摘要

Polymer-based eye drops are the most used drug delivery system to treat dry eye disease (DED). Therefore, the mucoadhesion between the polymer and the ocular mucin is crucial to ensure the efficacy of the treatment. In this context, the present study aimed to evaluate the potential use of in vitro methods to study the mucoadhesion of eye drop solutions and, specifically to evaluate the efficacy of two hyaluronic acid-based formulations (HA), HA 0.15% and 0.30% (w/v) to treat DED. Rheology methods and zeta potential determination were used to study the mucoadhesive properties of both eye drop solutions. All results indicated that interactions occurred between the mucin and the HA, being stronger with HA 0.30%, due to the physical entanglements and hydrogen bounding. In vitro tests on ARPE-19 cell line were performed using a 2D and a 3D dry eye model and the results have shown that pre-treated cells with HA showed a morphology more similar to the hydrated cells in both products, with a high survival rate. The in vitro techniques used in this study have been shown to be suitable to evaluate and predict mucoadhesive properties and the efficacy of the eye drops on relief or treatment of DED. The results obtained from these methods may help in inferring possible in vivo effects.
机译:基于聚合物的滴眼液是治疗干眼病(DED)的最常用的药物输送系统。因此,聚合物和眼粘蛋白之间的粘膜粘附对于确保治疗效果至关重要。在此背景下,本研究旨在评估体外方法研究滴眼液粘膜粘附的潜在用途,特别是评估两种透明质酸基制剂(HA)的功效:HA 0.15%和0.30%( w / v)治疗DED。流变学方法和ζ电势测定被用于研究两种滴眼剂溶液的粘膜粘附特性​​。所有结果表明,粘蛋白与HA之间发生相互作用,由于物理缠结和氢键作用,在HA 0.30%时更强。使用2D和3D干眼模型对ARPE-19细胞系进行了体外测试,结果表明,用HA预处理的细胞在两种产品中均表现出与水合细胞更相似的形态,并具有较高的存活率。已显示该研究中使用的体外技术适合评估和预测粘膜粘附特性​​以及滴眼液缓解或治疗DED的功效。从这些方法获得的结果可能有助于推断可能的体内作用。

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