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The design of contact lens based ocular drug delivery systems for single-day use:part (I) structural factors, surrogate ophthalmic dyes and passive diffusion studies

机译:单日使用的基于隐形眼镜的眼用药物输送系统的设计:(I)结构因素,替代眼用染料和被动扩散研究

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摘要

The poor retention and efficacy of instilled drops as a means of delivering drugs to the ophthalmic environment is well-recognised. The potential value of contact lenses as a means of ophthalmic drug delivery, and consequent improvement of pre-corneal retention is one obvious route to the development of a more effective ocular delivery system. Furthermore, the increasing availability and clinical use of daily disposable contact lenses provides the platform for the development of viable single-day use drug delivery devices based on existing materials and lenses. In order to provide a basis for the effective design of such devices, a systematic understanding of the factors affecting the interaction of individual drugs with the lens matrix is required. Because a large number of potential structural variables are involved, it is necessary to achieve some rationalisation of the parameters and physicochemical properties (such as molecular weight, charge, partition coefficients) that influence drug interactions. Ophthalmic dyes and structurally related compounds based on the same core structure were used to investigate these various factors and the way in which they can be used in concert to design effective release systems for structurally different drugs. Initial studies of passive diffusional release form a necessary precursor to the investigation of the features of the ocular environment that over-ride this simple behaviour. Commercially available contact lenses of differing structural classifications were used to study factors affecting the uptake of the surrogate actives and their release under 'passive' conditions. The interaction between active and lens material shows considerable and complex structure dependence, which is not simply related to equilibrium water content. The structure of the polymer matrix itself was found to have the dominant controlling influence on active uptake; hydrophobic interaction with the ophthalmic dye playing a major role.
机译:众所周知,滴注的滴剂的滞留性和功效不佳,是将药物输送到眼科环境的一种手段。隐形眼镜作为眼科药物递送手段的潜在价值,以及因此改善的角膜前保留能力,是发展更有效的眼部递送系统的一条明显途径。此外,日抛型隐形眼镜的可用性和临床使用的增加为基于现有材料和镜片开发可行的单日使用药物输送装置提供了平台。为了为此类设备的有效设计提供基础,需要对影响单个药物与晶状体基质相互作用的因素有系统的了解。由于涉及大量潜在的结构变量,因此有必要对影响药物相互作用的参数和理化性质(例如分子量,电荷,分配系数)进行合理化处理。使用基于相同核心结构的眼科染料和与结构相关的化合物来研究这些各种因素,以及它们如何协同使用以设计针对结构不同的药物的有效释放系统。被动扩散释放的初步研究形成了超越这种简单行为的眼环境特征研究的必要先决条件。使用市售的不同结构分类的隐形眼镜来研究影响替代活性物质摄取及其在“被动”条件下释放的因素。活性物质和镜片材料之间的相互作用显示出相当大且复杂的结构依赖性,这不仅与平衡水含量有关。发现聚合物基体本身的结构对活性吸收具有主要的控制影响。疏水性与眼科染料的相互作用起主要作用。

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