Ulrich Konstantin, Sanders Monica, Vasenkov Sergey
Fakultät für Physik und Geowissenschaften, Universität Leipzig, 04103 Leipzig, Germany.
Magn Reson Imaging. 2007 May;25(4):493-6. doi: 10.1016/j.mri.2006.11.014. Epub 2007 Jan 18.
This work demonstrates the feasibility of noninvasive studies of diffusion on a submicrometer length scale in aligned model lipid membranes using pulsed field gradient nuclear magnetic resonance with ultrahigh (up to 35 T/m) gradient strength. Application of such gradients allows the use of sufficiently small diffusion times under conditions of narrow-pulse approximation. As a result, monitoring anomalous or restricted diffusion in lipid membranes on a length scale in the range of 100 nm becomes possible. The ability to study diffusion in lipid membranes on this length scale is very important because it is comparable with the size of biologically relevant domains (i.e., rafts), which are believed to exist in biomembranes.
这项工作证明了使用超高(高达35 T/m)梯度强度的脉冲场梯度核磁共振技术,在排列的模型脂质膜中对亚微米长度尺度上的扩散进行无创研究的可行性。应用这种梯度使得在窄脉冲近似条件下能够使用足够短的扩散时间。结果,在100 nm范围内的长度尺度上监测脂质膜中的异常或受限扩散成为可能。在这个长度尺度上研究脂质膜中扩散的能力非常重要,因为它与生物膜中被认为存在的生物学相关结构域(即筏)的大小相当。