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脂质体复合物结构及脂质相变化分析

Analysis of lipoplex structure and lipid phase changes.

作者信息

Koynova Rumiana

机构信息

Northwestern University, Evanston, IL, USA.

出版信息

Methods Mol Biol. 2010;606:399-423. doi: 10.1007/978-1-60761-447-0_28.

Abstract

Efficient delivery of genetic material to cells is needed for tasks of utmost importance in the laboratory and clinic, such as gene transfection and gene silencing. Synthetic cationic lipids can be used as delivery vehicles for nucleic acids and are now considered the most promising nonviral gene carriers. They form complexes (lipoplexes) with the polyanionic nucleic acids. A critical obstacle for clinical application of the lipid-mediated DNA delivery (lipofection) is its unsatisfactory efficiency for many cell types. Understanding the mechanism of lipid-mediated DNA delivery is essential for their successful application, as well as for a rational design and synthesis of novel cationic lipoid compounds for enhanced gene delivery. A viewpoint now emerging is that the critical factor in lipid-mediated transfection is the structural evolution of lipoplexes within the cell, upon interacting and mixing with cellular lipids. In particular, recent studies showed that the phase evolution of lipoplex lipids upon interaction and mixing with membrane lipids appears to be decisive for transfection success: specifically, lamellar lipoplex formulations, which were readily susceptible to undergoing lamellar-nonlamellar phase transition upon mixing with cellular lipids and were found rather consistently associated with superior transfection potency, presumably as a result of facilitated DNA release. Thus, understanding the lipoplex structure and the phase changes upon interacting with membrane lipids is important for the successful application of the cationic lipids as gene carriers.

摘要

在实验室和临床中,对于诸如基因转染和基因沉默等极其重要的任务而言,需要将遗传物质高效递送至细胞。合成阳离子脂质可作为核酸的递送载体,目前被认为是最具前景的非病毒基因载体。它们与带负电的核酸形成复合物(脂质体复合物)。脂质介导的DNA递送(脂质转染)在临床应用中的一个关键障碍是,对于许多细胞类型而言其效率并不理想。了解脂质介导的DNA递送机制对于其成功应用至关重要,同时对于合理设计和合成用于增强基因递送的新型阳离子脂质化合物也很重要。现在出现的一种观点是,脂质介导的转染中的关键因素是脂质体复合物在细胞内与细胞脂质相互作用并混合时其结构的演变。特别是,最近的研究表明,脂质体复合物脂质在与膜脂质相互作用并混合时的相演变似乎对转染成功起决定性作用:具体而言,层状脂质体复合物制剂在与细胞脂质混合时很容易发生层状-非层状相变,并且发现其始终与较高转染效力相关,这可能是由于DNA释放更容易。因此,了解脂质体复合物结构以及与膜脂质相互作用时的相变对于阳离子脂质作为基因载体的成功应用很重要。

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