Momot Konstantin I, Takegoshi K, Kuchel Philip W, Larkin Timothy J
School of Physical and Chemical Sciences, Queensland University of Technology, GPO Box 2434, Brisbane, Qld 4001, Australia.
J Phys Chem B. 2008 May 29;112(21):6636-45. doi: 10.1021/jp8006415. Epub 2008 May 6.
NMR line shapes of the lipid and aqueous species in bicontinuous cubic phase (BCP) samples prepared by centrifugation are inhomogeneously broadened. The broadening of the lipid peaks is removed by magic-angle spinning (MAS). In this work, we studied the mechanism of this broadening using (1)H and (13)C NMR spectroscopy of a myverol/water BCP. It is demonstrated that the inhomogeneity possesses an intrinsic contribution that is independent of instrumental or setup factors and can be attributed to the microscopic organization of the BCP bilayer. A mechanism of the inhomogeneous broadening is proposed, which involves a spatially nonuniform diamagnetically induced magnetic field determined by the mesoscopic structure and the diamagnetic susceptibilities of the two BCP domains. The proposed mechanism does not require that molecular reorientation of the lipid be slow for the inhomogeneous broadening to survive. We discuss how this inhomogeneous broadening can be employed as a probe of compositional uniformity and microscopic organization of BCP samples.
通过离心制备的双连续立方相(BCP)样品中脂质和水相物质的核磁共振(NMR)谱线形状存在非均匀展宽。脂质峰的展宽可通过魔角旋转(MAS)消除。在这项工作中,我们使用肉豆蔻酸甘油酯/水BCP的(1)H和(13)C NMR光谱研究了这种展宽的机制。结果表明,这种不均匀性具有独立于仪器或设置因素的内在贡献,可归因于BCP双层的微观组织。提出了一种非均匀展宽的机制,该机制涉及由介观结构和两个BCP域的抗磁磁化率决定的空间非均匀抗磁诱导磁场。所提出的机制并不要求脂质的分子重排缓慢才能使非均匀展宽持续存在。我们讨论了如何将这种非均匀展宽用作BCP样品组成均匀性和微观组织的探针。