论文标题
DOPC囊泡的结构和动力学:通过N-烷基PEO聚合物从单层到多层囊泡的转化
Structure and dynamics of DOPC vesicles: A transformation from unilamellar to multilamellar vesicles by n-alkyl-PEO polymer
论文作者
论文摘要
我们研究了非离子表面活性剂(例如聚合物)对磷脂囊泡的影响。我们的结果来自低温透射电子显微镜(Cryo-TEM),动态光散射(DLS),小角度中子和X射线散射(SANS/SAXS),鉴定了多层囊泡的存在以及在存在聚合物的情况下囊泡的大小增加。我们提出了一个广义模型,以从中子自旋回声光谱(NSE)数据中获得多层囊泡的弯曲刚度。我们证明了聚合物被困在脂质双层中,从而导致囊泡的部分破坏,这归因于单位双层弯曲刚度的降低。我们还观察到在聚合物存在下,捕获的脂质尾部运动的大量阻尼。我们的结果强调了使用专门的聚合物的可能性,这些聚合物可以通过局部药物或营养配方中的应用来破坏膜并控制其动态。
We investigate the influence of a non-ionic surfactant like polymer on phospholipid vesicles. Our results from cryogenic transmission electron microscopy (cryo-TEM), dynamic light scattering (DLS), small angle neutron and X-ray scattering (SANS/SAXS), identifies the existence of multilayer vesicles and an increase in size of the vesicles in presence of the polymers. We present a generalized model to obtain the bending rigidity from neutron spin echo spectroscopy (NSE) data for multilayer vesicles. We demonstrated that polymers are trapped in the lipid bilayer, causing a partial disruption in the vesicle, which is attributed to the reduction in bending rigidity per unit bilayer. We also observed substantial dampening of the trapped lipid tail motion in presence of the polymer. Our results highlighted the possibilities of using specialized polymers that can disrupt membrane and control their dynamics with possible application in topical drug or nutraceutical formulations.