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存在低浓度七叶皂苷时 DMPC 囊泡结构和动力学。

DMPC vesicle structure and dynamics in the presence of low amounts of the saponin aescin.

机构信息

Physical and Biophysical Chemistry, Bielefeld University, Bielefeld, Germany.

出版信息

Phys Chem Chem Phys. 2018 Apr 4;20(14):9070-9083. doi: 10.1039/c7cp08027a.

Abstract

Vesicle shape and bilayer parameters are studied by small-angle X-ray (SAXS) and small-angle neutron (SANS) scattering in the presence of the saponin aescin. We confirm successful incorporation of aescin molecules by analysis of the radii of gyration RG and study furthermore the impact of aescin incorporation on bilayer thickness parameters from the neutron and X-ray perspective. Additionally, the bending elasticity (κ) of these 1,2-dimyristoyl-sn-glycero-3-phosphocholine vesicle bilayers is studied in the presence of aescin. Neutron spin-echo spectroscopy (NSE) allows to detect subtle changes in the dynamics and κ of lipid membranes. Changes of κ are detectable at temperatures below and above the main phase transition temperature Tm of the lipid. The impact of aescin is much more significant below Tm. It has been found that below Tm the addition of aescin to the vesicles decreases the value of κ and softens the bilayer. Above Tm the value of κ increases with increasing aescin content and the bilayer becomes more rigid. Altogether, we demonstrate by analysis of the structure and dynamics of the vesicles that the impact of aescin strongly depends on the lipid state. Below Tm the membrane becomes fluidized and softer, above Tm solidified and stiffer compared to a DMPC membrane without additive at similar conditions.

摘要

在皂苷艾斯卡宁存在的情况下,通过小角 X 射线(SAXS)和小角中子(SANS)散射研究了囊泡形状和双层参数。我们通过回转半径 RG 的分析确认了艾斯卡宁分子的成功掺入,并进一步从中子和 X 射线的角度研究了艾斯卡宁掺入对双层厚度参数的影响。此外,还研究了这些 1,2-二肉豆蔻酰-sn-甘油-3-磷酸胆碱囊泡双层在艾斯卡宁存在下的弯曲弹性(κ)。中子自旋回波光谱(NSE)可用于检测脂质膜动力学和 κ 的细微变化。在低于和高于脂质主相变温度 Tm 的温度下,κ 的变化是可检测的。在 Tm 以下,艾斯卡宁的影响要大得多。研究发现,在 Tm 以下,向囊泡中添加艾斯卡宁会降低 κ 值并使双层变软。在 Tm 以上,随着艾斯卡宁含量的增加,κ 值增加,双层变得更加刚性。总的来说,我们通过分析囊泡的结构和动力学证明,艾斯卡宁的影响强烈依赖于脂质状态。在 Tm 以下,与类似条件下没有添加剂的 DMPC 膜相比,膜变得流化且更软,在 Tm 以上,与类似条件下没有添加剂的 DMPC 膜相比,膜变得固化且更硬。

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