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通过磁定向控制脂质-Fe3O4 纳米粒子混合中间相中的各向异性药物扩散。

Controlling anisotropic drug diffusion in lipid-Fe3O4 nanoparticle hybrid mesophases by magnetic alignment.

机构信息

Food and Soft Materials Science, Department of Health Science and Technology, ETH Zurich, Schmelzbergstrasse 9, CH-8092 Zürich, Switzerland.

出版信息

Langmuir. 2013 Jan 29;29(4):999-1004. doi: 10.1021/la304563r. Epub 2013 Jan 14.

DOI:10.1021/la304563r
PMID:23302008
Abstract

We present a new strategy to control the anisotropic diffusion of hydrophilic drugs in lyotropic liquid crystals via the dispersion of magnetic nanoparticles in the mesophase, followed by reorientation of the mesophase domains via an external magnetic field. We select a lipid reverse hexagonal phase doped with magnetic iron oxide nanoparticles and glucose and caffeine as model hybrid mesophase and hydrophilic drugs, respectively. Upon cooling through the disorder-order phase transition of the hexagonal phase and under exposure to an external moderate magnetic field (1.1 T), both the nanoparticles and the hexagonal domains align with their columnar axes along the field direction. As a result, the water nanochannels of the inverted hexagonal domains also align parallel to the field direction, leading to a drug diffusion coefficient parallel to the field direction much larger than what was measured perpendicularly: in the case of glucose, for example, this difference in diffusion coefficients approaches 1 order of magnitude. Drug diffusion of the unaligned reverse hexagonal phase, which consists of randomly distributed domains, shows values in between the parallel and transversal diffusion values. This study shows that modifying the overall alignment of anisotropic mesophases via moderate external fields is a valuable means to control the corresponding transport tensor of the mesophase and demonstrates that the orientation of the domains plays an important role in the diffusion process of foreign hydrophilic molecules.

摘要

我们提出了一种新策略,通过在溶致液晶中分散磁性纳米粒子来控制亲水性药物的各向异性扩散,然后通过外部磁场重新定向中间相域。我们选择了一种掺杂有磁性氧化铁纳米粒子和葡萄糖和咖啡因的脂质反向六方相作为模型混合中间相和亲水性药物。在冷却通过六方相的无序-有序相变并暴露于外部适度磁场(1.1 T)时,纳米粒子和六方畴都沿着场的方向沿着其柱状轴对齐。结果,反六方畴的水纳米通道也平行于场方向对齐,导致平行于场方向的药物扩散系数比垂直方向测量的大得多:例如,在葡萄糖的情况下,这种扩散系数的差异接近 1 个数量级。由随机分布的畴组成的未对齐反向六方相的药物扩散显示出介于平行和横向扩散值之间的值。这项研究表明,通过适度的外部场来改变各向异性中间相的整体取向是控制中间相相应输运张量的有效手段,并表明畴的取向在扩散过程中起重要作用外来亲水分子。

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