Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
Langmuir. 2010 Jun 15;26(12):9710-9. doi: 10.1021/la1003512.
Sum frequency generation (SFG) spectroscopy has been used to study the structure of phosphatidylethanolamine hybrid bilayer membranes (HBMs) under water at ambient temperatures. The HBMs were formed using a modified Langmuir-Schaefer technique and consisted of a layer of dipalmitoyl phosphatidylethanolamine (DPPE) physisorbed onto an octadecanethiol (ODT) self-assembled monolayer (SAM) at a series of surface pressures from 1 to 40 mN m(-1). The DPPE and ODT were selectively deuterated so that the contributions to the SFG spectra from the two layers could be determined separately. SFG spectra in both the C-H and C-D stretching regions confirmed that a monolayer of DPPE had been adsorbed to the ODT SAM and that there were gauche defects within the alkyl chains of the phospholipid. On adsorption of a layer of DPPE, methylene modes from the ODT SAM were detected, indicating that the phospholipid had partially disordered the alkanethiol monolayer. SFG spectra recorded in air indicated that removal of water from the surface of the HBM resulted in disruption of the DPPE layer and the formation of phospholipid bilayers.
和频发生(SFG)光谱已被用于研究水相环境中在常温下的磷脂酰乙醇胺混合双层膜(HBM)的结构。HBM 通过改良的Langmuir-Schaefer 技术形成,其由一层物理吸附在十八烷硫醇(ODT)自组装单层(SAM)上的二棕榈酰磷脂酰乙醇胺(DPPE)组成,表面压力范围从 1 到 40 mN m(-1)。DPPE 和 ODT 被选择性氘代,以便可以分别确定 SFG 光谱中来自两层的贡献。在 C-H 和 C-D 伸缩区域的 SFG 光谱证实,已经有一层 DPPE 被吸附到 ODT SAM 上,并且在磷脂的烷基链中存在 gauche 缺陷。在 DPPE 吸附层上,检测到来自 ODT SAM 的亚甲基模式,表明磷脂部分使烷硫醇单层无序化。在空气中记录的 SFG 光谱表明,从 HBM 表面除去水会破坏 DPPE 层并形成磷脂双层。