Department of Physics and Astronomy, Valparaiso University, Valparaiso, Indiana 46383, United States.
Langmuir. 2011 Apr 5;27(7):3792-7. doi: 10.1021/la1050942. Epub 2011 Mar 10.
Hydrophobic monomers partially phase separate from saturated lipids when loaded into lipid bilayers in amounts exceeding a 1:1 monomer/lipid molar ratio. This conclusion is based on the agreement between two independent methods of examining the structure of monomer-loaded bilayers. Complete phase separation of monomers from lipids would result in an increase in bilayer thickness and a slight increase in the diameter of liposomes. A homogeneous distribution of monomers within the bilayer would not change the bilayer thickness and would lead to an increase in the liposome diameter. The increase in bilayer thickness, measured by the combination of small-angle neutron scattering (SANS) and small-angle X-ray scattering (SAXS), was approximately half of what was predicted for complete phase separation. The increase in liposome diameter, measured by dynamic light scattering (DLS), was intermediate between values predicted for a homogeneous distribution and complete phase separation. Combined SANS, SAXS, and DLS data suggest that at a 1.2 monomer/lipid ratio approximately half of the monomers are located in an interstitial layer sandwiched between lipid sheets. These results expand our understanding of using self-assembled bilayers as scaffolds for the directed covalent assembly of organic nanomaterials. In particular, the partial phase separation of monomers from lipids corroborates the successful creation of nanothin polymer materials with uniform imprinted nanopores. Pore-forming templates do not need to span the lipid bilayer to create a pore in the bilayer-templated films.
当疏水单体的加载量超过单体与脂质摩尔比 1:1 时,它们会从饱和脂质中部分相分离。这一结论基于两种独立的方法对单体加载双层膜结构的研究。单体与脂质的完全相分离将导致双层膜厚度增加和脂质体直径略有增加。单体在双层膜中的均匀分布不会改变双层膜的厚度,只会导致脂质体直径增加。小角中子散射 (SANS) 和小角 X 射线散射 (SAXS) 的组合测量的双层膜厚度增加约为完全相分离预测值的一半。动态光散射 (DLS) 测量的脂质体直径增加介于均匀分布和完全相分离预测值之间。SANS、SAXS 和 DLS 数据的综合表明,在单体与脂质的比例为 1.2 时,大约一半的单体位于脂质片之间的夹层中。这些结果扩展了我们对使用自组装双层膜作为指导共价组装有机纳米材料支架的理解。特别是,单体与脂质的部分相分离证实了成功制备具有均匀印迹纳米孔的纳米超薄聚合物材料。形成孔的模板不需要跨越脂质双层来在双层模板化薄膜中形成孔。