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纳米结构水分散体的表征及潜在应用

Characterization and potential applications of nanostructured aqueous dispersions.

作者信息

Yaghmur Anan, Glatter Otto

机构信息

Institute of Chemistry, University of Graz, Graz, Austria.

出版信息

Adv Colloid Interface Sci. 2009 Mar-Jun;147-148:333-42. doi: 10.1016/j.cis.2008.07.007. Epub 2008 Aug 22.

Abstract

The present article highlights recent advances and current status in the characterization and the utilization of nanostructured aqueous dispersions in which the submicron-sized dispersed particles envelope a distinctive well-defined self-assembled interior. The scope of this review covers dispersions of both inverted-type liquid-crystalline particles (cubosomes, hexosomes, micellar cubosomes, and sponge phases), and microemulsion droplets (emulsified microemulsions, EMEs). Recent investigations that have attempted to shed light on the characterization and the control of confined nanostructures of aqueous dispersions are surveyed, as these nanoobjects are attractive for various pharmaceutical and food applications. The focus has been placed on three main subjects: (1) our findings on the formation of EMEs and the modulation of the internal nanostructure, exploring how variations in temperature, oil content, and lipid composition significantly affect the confined nanostructures; (2) recent developments in the field of electron microscopy: using the tilt-angle cryo-TEM method or cryo-field emission scanning electron microscopy (cryo-FESEM) for observing the three dimensional (3D) morphology of non-lamellar liquid-crystalline nanostructured particles (cubosome and hexosome particles); and (3) recent studies on the utilization of nanostructured dispersions as drug nanocarriers.

摘要

本文重点介绍了纳米结构水分散体的表征和利用方面的最新进展和现状,其中亚微米级分散颗粒包裹着独特的、定义明确的自组装内部结构。本综述的范围涵盖了反转型液晶颗粒(立方液晶、六方液晶、胶束立方液晶和海绵相)以及微乳液滴(乳化微乳液,EMEs)的分散体。本文调查了最近试图阐明水分散体受限纳米结构的表征和控制的研究,因为这些纳米物体在各种制药和食品应用中具有吸引力。重点放在了三个主要主题上:(1)我们关于EMEs形成和内部纳米结构调制的发现,探索温度、油含量和脂质组成的变化如何显著影响受限纳米结构;(2)电子显微镜领域的最新进展:使用倾斜角冷冻透射电子显微镜方法或冷冻场发射扫描电子显微镜(cryo-FESEM)观察非层状液晶纳米结构颗粒(立方液晶和六方液晶颗粒)的三维(3D)形态;(3)最近关于将纳米结构分散体用作药物纳米载体的研究。

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