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脂质几何形状在设计用于增溶脂溶性差药物的脂质体中的作用。

The role of lipid geometry in designing liposomes for the solubilisation of poorly water soluble drugs.

机构信息

School of Life and Health Sciences, Aston University, Birmingham B4 7ET, UK.

出版信息

Int J Pharm. 2013 Aug 30;453(1):225-32. doi: 10.1016/j.ijpharm.2012.06.056. Epub 2012 Jul 3.

Abstract

Liposomes are well recognised for their ability to improve the delivery of a range of drugs. More commonly they are applied for the delivery of water-soluble drugs, but given their structural attributes, they can also be employed as solubilising agents for low solubility drugs as well as drug targeting agents. To further explore the potential of liposomes as solubilising agents, we have investigated the role of bilayer packaging in promoting drug solubilisation in liposome bilayers. The effect of alkyl chain length and symmetry was investigated to consider if using 'mis-matched' phospholipids could create 'voids' within the bilayers, and enhance bilayer loading capacity. Lipid packing was investigated using Langmuir studies, which demonstrated that increasing the alkyl chain length enhanced lipid packing, with condensed monolayers forming, whilst asymmetric lipids formed less condensed monolayers. However, this more open packing did not translate into improved drug loading, with the longer chain, condensed bilayers formed from long-chain, saturated lipids offering higher drug loading capacity. These studies demonstrate that liposomes formulated from longer chain, saturated lipids offer enhanced solubilisation capacity. However the molecular size, rather than lipophilicity, of the drug to be incorporated was also a key factor dominating bilayer incorporation efficiency.

摘要

脂质体因其能够提高多种药物的递送能力而广为人知。它们通常被用于递送水溶性药物,但鉴于其结构特性,它们也可以用作低溶解度药物的增溶剂以及药物靶向剂。为了进一步探索脂质体作为增溶剂的潜力,我们研究了双层包装在促进脂质体双层中药物增溶中的作用。研究了烷基链长度和对称性的影响,以考虑是否使用“不匹配”的磷脂可以在双层中形成“空隙”,并提高双层载药能力。通过 Langmuir 研究研究了脂质的堆积情况,结果表明,增加烷基链长度会增强脂质堆积,形成凝聚的单层,而不对称脂质则形成不太凝聚的单层。然而,这种更开放的堆积并没有转化为改善药物负载,长链、饱和脂质形成的更长链、凝聚的双层提供了更高的药物负载能力。这些研究表明,由长链饱和脂质制成的脂质体提供了增强的增溶能力。然而,被包裹药物的分子大小,而不是亲脂性,也是主导双层包裹效率的关键因素。

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