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一系列二甘油四醚模型脂质及其溶致液晶组装体的结构-性质关系:支化拓扑结构和手性的影响。

Structure-property relationships in a series of diglycerol tetraether model lipids and their lyotropic assemblies: the effect of branching topology and chirality.

作者信息

Markowski Thomas, Drescher Simon, Meister Annette, Blume Alfred, Dobner Bodo

机构信息

Martin-Luther-Universitaet Halle-Wittenberg, Institute of Pharmacy, Wolfgang-Langenbeck-Str. 4, 06120 Halle (Saale), Germany.

出版信息

Org Biomol Chem. 2014 Jun 14;12(22):3649-62. doi: 10.1039/c4ob00048j. Epub 2014 Apr 24.

DOI:10.1039/c4ob00048j
PMID:24763471
Abstract

Three novel diglycerol tetraether lipids with one membrane-spanning chain have been synthesized. These lipids contain only two or four racemic methyl branches at selected positions of the hydrophobic chains in contrast to natural lipids from archaebacterial membranes with an isoprenoid substitution pattern. The insertion of the methyl moieties was realized starting from either (RS)-citronellyl bromide or the inexpensive methyl malonic acid ethyl ester. For chain elongation the Cu-catalysed Grignard coupling reaction was used. The preparation of diglycerol tetraethers was either performed by condensing suitable blocked monoglycerol diethers by Grubbs metathesis or by reaction of the transmembrane C32-chain with blocked glycerols followed by further alkylation steps. Finally, we could show that the resulting lipids can form closed lipid vesicles comparable to the optically pure counterparts. Therefore, these much simpler lipids compared to the natural lipids from archaebacterial membranes are also suitable for preparation of stable tailored liposomes.

摘要

已经合成了三种具有一条跨膜链的新型二甘油四醚脂质。与具有类异戊二烯取代模式的古细菌膜天然脂质相比,这些脂质在疏水链的选定位置仅含有两个或四个外消旋甲基分支。甲基部分的引入是从(RS)-香茅基溴或廉价的乙基甲基丙二酸酯开始实现的。对于链延长,使用了铜催化的格氏偶联反应。二甘油四醚的制备要么通过格拉布斯复分解反应缩合合适的封端单甘油二醚来进行,要么通过跨膜C32链与封端甘油反应,然后进行进一步的烷基化步骤来进行。最后,我们可以证明,所得脂质能够形成与光学纯对应物相当的封闭脂质囊泡。因此,与古细菌膜天然脂质相比,这些简单得多的脂质也适用于制备稳定的定制脂质体。

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