AN OVERVIEW ON CUBOSOMES AS REMARKABLE NANOCARRIER FOR DRUG DELIVERY

Vandana Gupta
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Abstract

Lipids have been extensively used as main ingredients in various drug delivery systems, such as liposomes, solid lipid nanoparticles, nanostructured lipid carriers and lipid-based lyotropic liquid crystals. Over the past few years, lipid-based lyotropic, bicontinuous cubic phase liquid crystals have been investigated for their applicability to controlled delivery of active ingredients. Lipid-based lyotropic liquid crystals have highly ordered, thermodynamically stable internal nanostructure, thereby offering the potential as a sustained drug release matrix. The emulsification of cubic lipid phases in water results in the production of cubosomes that can be defined as nanoparticulate disperse systems characterised by high biocompatibility and bioadhesivity. The unique microstructure of cubosomes have the potentials to control the release of active ingredients, improve drug bioavailability and reduce toxicity, enhance the stability of drugs and to increase the penetrability of drug after topical application. This reflection will provide an overview of the lipids used to prepare cubic phase at physiological temperature, as well as the influencing factors on the phase transition of liquid crystals. In particular, the most current research progresses on cubic phase as drug delivery systems and its applications will be discussed. It might act as smart lipid nanoparticles for drug delivery.
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综述立方体作为药物输送的非凡纳米载体
脂质已被广泛用作各种给药系统的主要成分,如脂质体、固体脂质纳米颗粒、纳米结构脂质载体和脂基冻融液晶。过去几年来,人们一直在研究脂基各向同性双连续立方相液晶在控制活性成分给药方面的适用性。脂基各向同性液晶具有高度有序、热力学稳定的内部纳米结构,因此具有作为药物持续释放基质的潜力。立方体脂相在水中乳化后会产生立方体,这种立方体可定义为纳米颗粒分散系统,具有很高的生物相容性和生物粘附性。立方体独特的微观结构具有控制活性成分释放、提高药物生物利用度和降低毒性、增强药物稳定性以及提高局部用药后药物渗透性的潜力。本论文将概述在生理温度下用于制备立方相的脂质,以及液晶相变的影响因素。特别是,将讨论立方相作为药物输送系统的最新研究进展及其应用。它可以作为智能脂质纳米颗粒用于药物输送。
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来源期刊
自引率
0.00%
发文量
11
审稿时长
20 weeks
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