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Orientational behavior of phosphatidylcholine bilayers in the presence of aromatic amphiphiles and a magnetic field.

机译:磷脂酰胆碱双层在芳香两亲物和磁场存在下的取向行为。

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摘要

A number of aromatic-containing additives which can influence the orientation of fragments of lipid bilayer membranes by a magnetic field have been investigated. Two properties of these additives prove important: (1) sufficient detergency to facilitate reorganization of bilayer components and (2), sufficient anisotropy in magnetic susceptibility the preferred direction of fragment orientation. Triton X-100 is identified as effective in terms of facilitating magnetic field ordering of bilayer fragments but does not alter the preferred direction of orientation. A combination of the detergent CHAPSO (3-[(3-cholamidopropyl)-dimethylammonio]-1-propane sulfonate) and the aromatic alcohol 1-naphthol facilitates both ordering and alters the preferred direction of bilayer orientation. As mixtures of dimyristoylphosphatidylcholine (DMPC) and CHAPSO, which orient with bilayer normals perpendicular to the magnetic field, were titrated with 1-naphthol, the assemblies underwent transitions, first to random orientation, and then to an orientation with bilayer normals parallel to the field. Based on temperature-induced phase transitions and the extent of motional averaging of the 31P shielding tensor of the DMPC headgroup, the DMPC in these oriented samples appears to maintain a bilayer morphology during transitions. The insight provided in this study regarding factors which influence fragment stability and orientation lays the groundwork for the design of improved field-oriented media for spectroscopic investigation of membrane components.
机译:已经研究了许多可以通过磁场影响脂质双层膜片段取向的含芳族添加剂。这些添加剂的两个特性证明很重要:(1)足够的去污力以促进双层组分的重组;(2)磁化率中的充分各向异性(片段取向的首选方向)。就促进双层片段的磁场排序而言,Triton X-100被认为是有效的,但不会改变优选的取向方向。洗涤剂CHAPSO(3-[((3-胆酰胺基丙基)-二甲基铵基] -1-丙烷磺酸盐)和芳族醇1-萘酚的组合促进了有序化并改变了双层取向的优选方向。用1-萘酚滴定以垂直于磁场的双层法线取向的二丙炔基磷脂酰胆碱(DMPC)和CHAPSO的混合物时,组装体经历了转变,首先转变为随机取向,然后转变为双层法线平行于磁场的方向。基于温度诱导的相变和DMPC头组的31P屏蔽张量的运动平均程度,这些定向样品中的DMPC在过渡过程中似乎保持双层形态。这项研究提供的有关影响片段稳定性和方向的因素的见解为设计改进的面向现场的介质进行膜成分的光谱研究奠定了基础。

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