Guo Lin, Chowdhury Pramit, Fang Jiyu, Gai Feng
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Phys Chem B. 2007 Dec 27;111(51):14244-9. doi: 10.1021/jp076562n. Epub 2007 Dec 4.
Self-assembled lipid tubules with crystalline bilayer walls are promising candidates for controlled drug delivery vehicles on the basis of their ability to release preloaded biological molecules in a sustained manner. While a previous study has shown that the release rate of protein molecules from lipid tubules depends on the associated molecular mass, suggesting that the pertinent diffusion follows the well-known Stokes-Einstein relationship, only a few attempts have been made toward investigating the details of molecular diffusion in the tubule interior. Herein, we have characterized the diffusion rates of several molecules encapsulated in lipid tubules formed by 1,2-bis(10,12-tricosadiynoyl)-sn-glycero-3-phosphocholine (DC8,9PC) using the techniques of fluorescence recovery after photobleaching (FRAP) and fluorescence correlation spectroscopy (FCS). Our results show that the mobility of these molecules depends not only on their positions in the DC8,9PC tubules but also on their respective concentrations. While the former indicates that the interior of the DC8,9PC tubules is heterogeneous in terms of diffusion, the latter further highlights the possibility of engineering specific conditions for achieving sustained release of a "drug molecule" over a targeted period of time. In addition, our FCS results indicate that the molecular diffusions inside the crystalline bilayer walls of the DC8,9PC tubules strongly deviate from the normal, stochastic processes, with features characterizing not only anomalous subdiffusions but also motions that are superdiffusive in nature.
具有结晶双层壁的自组装脂质小管,因其能够持续释放预加载的生物分子,有望成为可控药物递送载体的候选物。虽然先前的一项研究表明,蛋白质分子从脂质小管中的释放速率取决于相关的分子量,这表明相关扩散遵循著名的斯托克斯 - 爱因斯坦关系,但针对研究小管内部分子扩散细节的尝试却很少。在此,我们使用光漂白后荧光恢复(FRAP)和荧光相关光谱(FCS)技术,对封装在由1,2 - 双(10,12 - 二十三碳二炔酰基)-sn - 甘油 - 3 - 磷酸胆碱(DC8,9PC)形成的脂质小管中的几种分子的扩散速率进行了表征。我们的结果表明,这些分子的迁移率不仅取决于它们在DC8,9PC小管中的位置,还取决于它们各自的浓度。前者表明DC8,9PC小管内部在扩散方面是异质的,后者进一步突出了设计特定条件以在目标时间段内实现“药物分子”持续释放的可能性。此外,我们的FCS结果表明,DC8,9PC小管结晶双层壁内的分子扩散与正常的随机过程有很大偏差,其特征不仅包括异常的亚扩散,还包括本质上超扩散的运动。