Self-Nanoemulsifying Drug Delivery System: Liquid, Supersaturable, and Solid Dosage Forms

I. K. Abbas
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引用次数: 1

Abstract

A third of recently created drugs have poor water solubility and absorption. Innovative methods, such as self-nanoemulsifying drug delivery systems (SNEDDS), are being developed to address issues with pharmaceutical delivery and bioavailability. These systems, which are referred to as isotropic mixtures, are made up of the drug, a suitable oil, a surfactant, and either a co-surfactant or co-solvent. These elements combine to create a "oil in water (O/W)" nanoemulsion after being lightly stirred. Colloidal systems, including microemulsions and nanoemulsions, are being used more commonly in food, cosmetics, and pharmaceutical preparations to encapsulate, protect, and transport lipophilic components. The nanoscale particles used in these kinds of delivery systems have a number of potential benefits, including enhanced long-term stability, enhanced solubility, enhanced optical transparency, and enhanced bioavailability. To create SNEDDS, one can utilize a phase diagram technique or a statistical design of trials. For SNEDDS, switching from a liquid to a solid dose form may have improved stability as well as increased patient compliance. The design and production of SNEDDS and their effects on the bioavailability of several medications are the subject of numerous studies that are included in this review.
自纳米乳化药物输送系统:液体、过饱和和固体剂型
最近发明的药物中有三分之一的水溶性和吸收率都很差。创新的方法,如自纳米乳化给药系统(SNEDDS),正在被开发来解决药物给药和生物利用度的问题。这些系统被称为各向同性混合物,由药物、合适的油、表面活性剂以及助表面活性剂或助溶剂组成。这些元素在轻微搅拌后结合在一起,形成了一种“水中油”(O/W)纳米乳液。胶体系统,包括微乳液和纳米乳液,在食品、化妆品和药物制剂中被更普遍地用于封装、保护和运输亲脂性成分。在这些输送系统中使用的纳米级颗粒具有许多潜在的好处,包括增强的长期稳定性,增强的溶解度,增强的光学透明度和增强的生物利用度。要创建SNEDDS,可以利用相图技术或试验的统计设计。对于SNEDDS,从液体剂型转换为固体剂型可能会改善稳定性并增加患者的依从性。SNEDDS的设计和生产及其对几种药物生物利用度的影响是本综述中包含的众多研究的主题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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