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Microstructured bicontinuous phase formulations: Their characterization and application in dermal and transdermal drug delivery

机译:微结构双连续相制剂:其表征和在皮肤和透皮药物递送中的应用

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Introduction: The development of approaches to increase drug solubility and partitioning into the skin is an active area of research in topical and transdermal delivery. In addition to forming spherical aggregates, e.g., conventional oil in water or water in oil microemulsions, the combination of an oil, surfactant and water can create bicontinuous structures where the self-assembly properties of surfactants mean that the boundaries between oil and water are no longer random. This leads to the formation of specific microstructures whose intrinsic properties and interactions with the drug will determine the ability to formulate a given drug, its stability once formulated and its subsequent delivery. Areas covered: The review explores the relationship between the microstructure of biphasic formulations, present in microemulsions and liquid crystalline phases, and drug delivery into the skin. An overview of possible internal microstructures is followed by a summary of the methods used for structure characterization. The final section presents the work to-date and discusses the efficacy of such vehicles in enhancing dermal and transdermal delivery. Expert opinion: The combination of water, surface agent and oil generates a broad range of three dimensional structures differing in both chemical and physical proprieties. Knowledge of the microstructure is important in understanding the behavior of a formulation and its effect on drug delivery into the skin. Microstructure complexity, interactions between the drug and the vehicle (i.e., location and mobility) and those between the vehicle and the skin are key determinants of drug delivery.
机译:简介:增加药物溶解度和分配到皮肤中的方法的开发是局部和透皮给药研究的活跃领域。除形成球形聚集体(例如常规的水包油或油包水微乳液)外,油,表面活性剂和水的组合还可以产生双连续结构,其中表面活性剂的自组装特性意味着油和水之间的边界不存在更长的随机性。这导致形成特定的微结构,其固有特性和与药物的相互作用将决定配制给定药物的能力,配制后的稳定性以及随后的递送。涵盖领域:综述探讨了微乳液和液晶相中存在的双相制剂的微观结构与药物向皮肤的传递之间的关系。在概述可能的内部微结构之后,概述了用于结构表征的方法。最后一节介绍了迄今为止的工作,并讨论了这类载体在增强皮肤和透皮递送方面的功效。专家意见:水,表面活性剂和油的组合产生了广泛的三维结构,这些三维结构在化学和物理特性上都不同。微观结构的知识对于理解制剂的行为及其对药物向皮肤的递送的影响很重要。微观结构的复杂性,药物与媒介物之间的相互作用(即位置和流动性)以及媒介物与皮肤之间的相互作用是决定药物递送的关键因素。

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