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Transforming lipid-based oral drug delivery systems into solid dosage forms: An overview of solid carriers, physicochemical properties, and biopharmaceutical performance

机译:将基于脂质的口服给药系统转变为固体剂型:固体载体,理化特性和生物制药性能概述

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摘要

The diversity of lipid excipients available commercially has enabled versatile formulation design of lipid-based drug delivery systems for enhancing the oral absorption of poorly water-soluble drugs, such as emulsions, microemulsions, micelles, liposomes, niosomes and various self-emulsifying systems. The transformation of liquid lipid-based systems into solid dosage forms has been investigated for several decades, and has recently become a core subject of pharmaceutical research as solidification is regarded as viable means for stabilising lipid colloidal systems while eliminating stringent processing requirements associated with liquid systems. This review describes the types of pharmaceutical grade excipients (silica nanoparticle/microparticle, polysaccharide, polymer and protein-based materials) used as solid carriers and the current state of knowledge on the liquid-to-solid conversion approaches. Details are primarily focused on the solid-state physicochemical properties and redispersion capacity of various dry lipid-based formulations, and how these relate to the in vitro drug release and solubilisation, lipid carrier digestion and cell permeation performances. Numerous in vivo proof-of-concept studies are presented to highlight the viability of these dry lipid-based formulations. This review is significant in directing future research work in fostering translation of dry lipid-based formulations into clinical applications.
机译:可商购的脂质赋形剂的多样性使脂质基药物递送系统的通用制剂设计成为可能,以增强水溶性差的药物(如乳剂,微乳剂,微团,脂质体,脂质体和各种自乳化系统)的口服吸收。已经研究了将液态脂质基系统转变为固体剂型数十年,并且最近已成为药物研究的核心课题,因为固化被认为是稳定脂质胶体系统的可行方法,同时消除了与液态系统相关的严格加工要求。这篇综述描述了用作固体载体的药用级赋形剂的类型(二氧化硅纳米颗粒/微粒,多糖,聚合物和蛋白质基材料)以及有关液-固转化方法的当前知识水平。细节主要集中于各种干脂质基制剂的固态物理化学性质和再分散能力,以及这些因素与体外药物释放和增溶,脂质载体消化和细胞渗透性能的关系。提出了许多体内概念验证研究,以突出这些基于干脂质的干燥制剂的可行性。这篇综述对指导未来的研究工作具有重要意义,以促进基于脂质的干燥制剂向临床应用的转化。

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