Madrid Elena, Horswell Sarah L
School of Chemistry, University of Birmingham , Edgbaston, Birmingham B15 2TT, U.K.
Langmuir. 2015 Nov 17;31(45):12544-51. doi: 10.1021/acs.langmuir.5b02765. Epub 2015 Nov 4.
Differences in molecular organization of two sides of a chemically symmetric, planar bilayer supported on a Au(111) substrate have been monitored with charge density measurements and in situ polarization modulation infrared reflection-absorption spectroscopy (PM-IRRAS). Isotopic substitution of the hydrogen atoms in the hydrocarbon chains with deuterium atoms in one monolayer was employed to allow the monitoring of C-H vibrations from that monolayer alone. Charge density measurements of bilayers formed from dimyristoylphosphatidylethanolamine (DMPE) showed that the effect of placing the deuterated layer next to the substrate or electrolyte had little impact on the electrical barrier properties. In situ PM-IRRAS studies revealed that the structure of the two monolayers was the same at negative potentials, where the bilayer is separated from the Au substrate, but different at more positive potentials or small charge densities, where the bilayer is expected to be directly adsorbed on the Au surface. Thus, the differences observed for the related molecule dimyristoylphosphatidylcholine (DMPC) persist in planar structures, although to a lesser extent. A small but observable variation in the tilt angle was also apparent in the spectra of both isotopically asymmetric DMPE bilayers during the electrochemical phase transition. The fact that this effect was not previously observed for hydrogenous bilayers means that the dynamic behavior of deuterated DMPE and/or of bilayers composed of different monolayers is different from that of hydrogenous DMPE bilayers. These results have implications for future studies in which isotopic substitution is used to extract selectively information from one layer or component of lipid bilayers in spectroscopic or neutron measurements.
通过电荷密度测量和原位偏振调制红外反射吸收光谱(PM-IRRAS),监测了支撑在Au(111)衬底上的化学对称平面双层膜两侧的分子组织差异。用氘原子取代单层烃链中的氢原子进行同位素取代,以便单独监测该单层的C-H振动。由二肉豆蔻酰磷脂酰乙醇胺(DMPE)形成的双层膜的电荷密度测量表明,将氘代层置于衬底或电解质旁边的影响对电屏障性能几乎没有影响。原位PM-IRRAS研究表明,在负电位下,双层膜与Au衬底分离时,两个单层的结构相同,但在更正的电位或小电荷密度下,双层膜预计直接吸附在Au表面时,结构不同。因此,尽管程度较小,但在平面结构中观察到的相关分子二肉豆蔻酰磷脂酰胆碱(DMPC)的差异仍然存在。在电化学相变过程中,两种同位素不对称DMPE双层膜的光谱中也明显出现了倾斜角的微小但可观察到的变化。以前在含氢双层膜中未观察到这种效应这一事实意味着,氘代DMPE和/或由不同单层组成的双层膜的动态行为与含氢DMPE双层膜不同。这些结果对未来的研究具有启示意义,在这些研究中,同位素取代用于在光谱或中子测量中从脂质双层膜的一层或组分中选择性地提取信息。