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Lateral Diffusion of PEG-Lipid in Magnetically Aligned Bicelles Measured Using Stimulated Echo Pulsed Field Gradient 1H NMR

机译:使用刺激的回波脉冲场梯度1H NMR测得的PEG-脂质在磁对准双链细胞中的横向扩散

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摘要

Lateral diffusion measurements of PEG-lipid incorporated into magnetically aligned bicelles are demonstrated using stimulated echo (STE) pulsed field gradient (PFG) proton (1H) nuclear magnetic resonance (NMR) spectroscopy. Bicelles were composed of dimyristoyl phosphatidylcholine (DMPC) plus dihexanoyl phosphatidylcholine (DHPC) (q = DMPC/DHPC molar ratio = 4.5) plus 1 mol % (relative to DMPC) dimyristoyl phosphatidylethanolamine-N-[methoxy(polyethylene glycol)-2000] (DMPE-PEG 2000) at 25 wt % lipid. 1H NMR STE spectra of perpendicular aligned bicelles contained only resonances assigned to residual HDO and to overlapping contributions from a DMPE-PEG 2000 ethoxy headgroup plus DHPC choline methyl protons. Decay of the latter's STE intensity in the STE PFG 1H NMR experiment (gz = 244 G cm−1) yielded a DMPE-PEG 2000 (1 mol %, 35°C) lateral diffusion coefficient D = 1.35 × 10−11 m2 s−1. Hence, below the “mushroom-to-brush” transition, DMPE-PEG 2000 lateral diffusion is dictated by its DMPE hydrophobic anchor. D was independent of the diffusion time, indicating unrestricted lateral diffusion over root mean-square diffusion distances of microns, supporting the “perforated lamellae” model of bicelle structure under these conditions. Overall, the results demonstrate the feasibility of lateral diffusion measurements in magnetically aligned bicelles using the STE PFG NMR technique.
机译:使用受激回波(STE)脉冲场梯度(PFG)质子( 1 H)核磁共振(NMR)光谱证明了掺入磁对准双胞胎的PEG-脂质的横向扩散测量。 Bicelles由二肉豆蔻酰基磷脂酰胆碱(DMPC)加上二己酰基磷脂酰胆碱(DHPC)(q = DMPC / DHPC摩尔比= 4.5)加上1 mol%(相对于DMPC)的二豆蔻酰基磷脂酰乙醇胺-N- [甲氧基(聚乙二醇)-2000](脂质含量为25 wt%的DMPE-PEG 2000)。垂直排列的Bicells的 1 H NMR STE光谱仅包含分配给残余HDO的共振和DMPE-PEG 2000乙氧基头基加DHPC胆碱甲基质子的重叠贡献。在STE PFG 1 H NMR实验中(gz = 244 G cm -1 ),后者的STE强度衰减,得到DMPE-PEG 2000(1 mol%,35° C)横向扩散系数D = 1.35×10 −11 m 2 s -1 。因此,在“蘑菇到刷子”过渡之下,DMPE-PEG 2000的横向扩散是由其DMPE疏水锚定的。 D与扩散时间无关,表明在微米的均方根扩散距离上不受限制的横向扩散,支持了在这些条件下比塞勒结构的“穿孔薄片”模型。总体而言,结果证明了使用STE PFG NMR技术在磁对准的双胞胎中进行横向扩散测量的可行性。

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