首页> 外文期刊>Journal of drug delivery science and technology >Lipid-based colloidal systems (nanoparticles, microemulsions) for drug delivery to the skin: materials and end-product formulations
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Lipid-based colloidal systems (nanoparticles, microemulsions) for drug delivery to the skin: materials and end-product formulations

机译:基于脂质的胶体系统(纳米颗粒,微乳状液),用于向皮肤输送药物:材料和最终产品配方

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摘要

Drug delivery to or via the skin presents both unique opportunities and obstacles due to skin structure, physiology, and barrier properties. The skin, the largest organ of the body, may be viewed either as a natural protective barrier against penetration of toxic exogenous compounds, excessive loss of water and other essential compounds, or as a promising portal of entry for drugs for local and/or systemic action. Many novel lipid nanocarriers have been designed for topical application of drugs since they allow these molecules to overcome the skin barrier and improve cutaneous bioavailability. The increased drug absorption is often a consequence of a reversibly disrupted barrier function of the skin by the vehicle itself or by specific ingredients figuring in the topical formulation that act as penetration enhancer. Microlnanoemulsions and lipid nanoparticles are known to provide several advantages over conventional formulations in terms of stability and skin penetration enhancement. However, their characteristics in the original form are low viscous liquids and. colloidal dispersions. Therefore, their topical application may be limited in some cases. This review describes recent works in formulating lipid nanocarriers, especially in the semi-solids and hydrogels forms, and reports their special features for biomedical and dermocosmetic applications.
机译:由于皮肤的结构,生理和屏障特性,将药物输送到皮肤或通过皮肤输送带来了独特的机会和障碍。皮肤是人体最大的器官,可以被视为天然的保护性屏障,可防止有毒的外源性化合物渗透,水分和其他必需化合物的过度流失,也可以被视为局部和/或全身性药物的有希望的进入途径行动。许多新型脂质纳米载体已被设计用于药物的局部应用,因为它们使这些分子能够克服皮肤屏障并改善皮肤生物利用度。药物吸收的增加通常是由于媒介本身或通过局部制剂中用作渗透促进剂的特定成分可逆地破坏了皮肤的屏障功能的结果。就稳定性和皮肤渗透性增强而言,已知微纳米乳剂和脂质纳米颗粒具有优于常规制剂的多个优点。但是,它们的原始形式的特性是低粘度液体。胶体分散体。因此,它们的局部应用在某些情况下可能会受到限制。这篇综述描述了配制脂质纳米载体的最新工作,特别是半固体和水凝胶形式的脂质纳米载体,并报道了它们在生物医学和皮肤美容应用中的特殊功能。

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