Momot Konstantin I, Kuchel Philip W, Whittaker Darryl
School of Molecular and Microbial Biosciences, University of Sydney, Sydney, NSW 2006, Australia.
Langmuir. 2004 Mar 30;20(7):2660-6. doi: 10.1021/la0362371.
Pulsed field gradient spin-echo NMR diffusion and relaxation measurements were used to investigate how the Na+ ionophore monensin affected the dynamics of sodium ions in a Myverol 18-99/saline bicontinuous Ia3d cubic phase (BCP). The monensin Na+ binding number was estimated from 23Na line widths to be between 3 and 6. The dependence of the apparent Na+ diffusion coefficient on the concentration of monensin revealed monensin-induced Na+ transport. At high monensin concentrations, the enhancement of D(Na+) was offset by Na+-monensin binding. The greatest enhancement was measured at short diffusion times (delta < or = 5 ms), which we explain in terms of the bicontinuous topology of the cubic phase and a combination of tortuosity and bilayer permeability effects. We also propose numerical simulations which would enable the separation of the two effects. To our knowledge, this is the first study of ionophore-mediated cation diffusion in a bicontinuous cubic phase. The approach could be used to study the dynamics of hydrophilic species in the aqueous channels of BCPs and similar structures, as well as to measure the ion-transporting efficiency of ionophores.
采用脉冲场梯度自旋回波核磁共振扩散和弛豫测量方法,研究了钠离子载体莫能菌素如何影响Myverol 18 - 99/盐水双连续Ia3d立方相(BCP)中钠离子的动力学。根据23Na线宽估计莫能菌素的钠离子结合数在3到6之间。表观钠离子扩散系数对莫能菌素浓度的依赖性揭示了莫能菌素诱导的钠离子运输。在高莫能菌素浓度下,D(Na+)的增强被钠离子与莫能菌素的结合所抵消。在短扩散时间(δ≤5毫秒)时测量到最大增强,我们从立方相的双连续拓扑结构以及曲折度和双层渗透性效应的组合来解释这一现象。我们还提出了数值模拟方法,该方法能够分离这两种效应。据我们所知,这是首次关于离子载体介导的阳离子在双连续立方相扩散的研究。该方法可用于研究亲水性物质在BCP和类似结构的水通道中的动力学,以及测量离子载体的离子运输效率。