首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Polymer Cushions in Supported Phospholipid Bilayers Reduce Significantly the Frictional Drag between Bilayer and Solid Surface
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Polymer Cushions in Supported Phospholipid Bilayers Reduce Significantly the Frictional Drag between Bilayer and Solid Surface

机译:支撑的磷脂双层中的聚合物垫层显着降低了双层与固体表面之间的摩擦阻力

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摘要

The reduction of fluid lecithin bilayer-substrate coupling by the presence of a hydrophilic polymer cushion in spherical supported bilayers of dipalmitoylphosphatidylcholine (DPPC) has been studied by measuring the lecithin molecular order and lateral diffusion using a deuterium NMR relaxation method. We obtained for both monolayers of the supported bilayer a lateral diffusion coefficient (D = 13.5 x 10~(-12) m~2/s at 55 deg C) similar to that measured previously in the outer monolayer of a supported bilayer on a bare silica surface, indicating that the presence of the polymer cushion cn indeed largely eliminate the slow down effect of the solid surface on the bilayer dynamics. Moreover, we found that the polymer cushion rendered the molecular order of the lipids identical to that measured for multilamellar bilayer vesicles (MLV). A comparison of the measured D values with those obtained for oriented planar multilayer stacks of DPPC strongly suggests that lateral diffusion in these systems is still a factor of 2 than that of single bilayers on a support.
机译:通过使用氘核磁共振弛豫方法测量卵磷脂的分子顺序和横向扩散,研究了通过在球形支撑的二棕榈酰磷脂酰胆碱(DPPC)球形双层中存在亲水性聚合物缓冲垫来减少流体卵磷脂双层-基质偶联的现象。我们获得了支撑双层的两个单层的横向扩散系数(D = 13.5 x 10〜(-12)m〜2 / s在55摄氏度),类似于先前在裸露的支撑双层的外单层中测得的横向扩散系数硅胶表面,表明聚合物垫层cn的存在确实在很大程度上消除了固体表面对双层动力学的减慢作用。此外,我们发现聚合物垫使脂质的分子顺序与多层双层囊泡(MLV)的分子顺序相同。将测得的D值与针对DPPC的定向平面多层堆栈获得的D值进行比较,有力地表明,这些系统中的横向扩散仍然是支撑体上单个双层的横向扩散的2倍。

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