Simeonova Margarita, Gimsa Jan
Department of Biology, University of Rostock, Chair of Biophysics, Rostock, Germany.
Bioelectromagnetics. 2006 Dec;27(8):652-66. doi: 10.1002/bem.20259.
We consider the influence of the molecular structure of phospholipid membranes on their dielectric properties in the radio frequency range. Membranes have a stratified dielectric structure on the submolecular level, with the lipid chains forming a central hydrophobic layer enclosed by the polar headgroups (HGs) and bound water layers. In our numerical model, isotropic permittivities of 2.2 and 48.8 were assigned to the lipid chain and bound water layers, respectively. The HG region was assumed to possess an anisotropic static permittivity with 142.2 and 30.2 in the tangential and normal directions, respectively. The permittivities of the HG and bound water regions have been assumed to disperse at frequencies around 51 and 345 MHz to become 2.2 and 1.8, respectively, in both the normal and tangential directions. Electric field distribution and absorption were calculated for phospholipid vesicles with 75 nm radius as an example. Significant absorption has been obtained in the HG and bound water regions. Averaging the membrane absorption over the layers resulted in a decreased absorption below 1 GHz but a more than 10-fold increase above 1 GHz, compared to a model with a homogeneous membrane of averaged properties. We propose single particle dielectric spectroscopy by AC electrokinetics at low-bulk medium conductivities for an experimental verification of our model.
我们考虑了磷脂膜的分子结构对其在射频范围内介电特性的影响。膜在亚分子水平上具有分层的介电结构,脂质链形成一个由极性头部基团(HG)和结合水层包围的中心疏水层。在我们的数值模型中,脂质链和结合水层的各向同性介电常数分别设为2.2和48.8。假设HG区域具有各向异性的静态介电常数,切向和法向分别为142.2和30.2。假设HG和结合水区域的介电常数在51和345 MHz左右的频率处发生色散,在法向和切向都变为2.2和1.8。以半径为75 nm的磷脂囊泡为例计算了电场分布和吸收情况。在HG和结合水区域获得了显著的吸收。与具有平均性质的均匀膜模型相比,对各层的膜吸收进行平均后,在1 GHz以下吸收降低,但在1 GHz以上增加了10倍以上。我们提出在低本体介质电导率下通过交流电动学进行单粒子介电光谱法,以对我们的模型进行实验验证。