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首页> 外文期刊>Colloid and polymer science >Properties of small molecular drug loading and diffusion in a fluorinated PEG hydrogel studied by ~1H molecular diffusion NMR and ~(19)F spin diffusion NMR
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Properties of small molecular drug loading and diffusion in a fluorinated PEG hydrogel studied by ~1H molecular diffusion NMR and ~(19)F spin diffusion NMR

机译:〜1H分子扩散NMR和〜(19)F自旋扩散NMR研究了氟化PEG水凝胶中小分子药物的负载和扩散特性

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摘要

R_f-PEG (fluoroalkyl double-ended poly(ethylene glycol)) hydrogel is potentially useful as a drug delivery depot due to its advanced properties of sol-gel two-phase coexistence and low surface erosion. In this study, ~1H molecular diffusion nuclear magnetic resonance (NMR) and ~(19)F spin diffusion NMR were used to probe the drug loading and diffusion properties of the Rf-PEG hydrogel for small anticancer drugs, 5-fluorouracil (FU) and its hydrophobic analog, 1,3-dimethyl-5-fiuorouracil (DMFU). It was found that FU has a larger apparent diffusion coefficient than that of DMFU, and the diffusion of the latter was more hindered. The result of ~(19)F spin diffusion NMR for the corresponding freeze-dried samples indicates that a larger portion of DMFU resided in the R_f core/IPDU intermediate- layer region (where IPDU refers to isophorone diurethane, as a linker to interconnect the R_f group and the PEG chain) than that of FU while the opposite is true in the PEG-water phase. To understand the experimental data, a diffusion model was proposed to include: (1) hindered diffusion of the drug molecules in the R_f core/IPDU-intermediate-layer region; (2) relatively free diffusion of the drug molecules in the PEG-water phase (or region); and (3) diffusive exchange of the probe molecules between the above two regions. This study also shows that molecular diffusion NMR combined with spin diffusion NMR is useful in studying the drug loading and diffusion properties in hydrogels for the purpose of drug delivery applications.
机译:R_f-PEG(氟代烷基双端聚乙二醇)水凝胶由于其溶胶-凝胶两相共存的先进特性和低表面侵蚀而潜在地可用作药物递送库。在这项研究中,使用〜1H分子扩散核磁共振(NMR)和〜(19)F自旋扩散NMR来探测Rf-PEG水凝胶对小型抗癌药物5-氟尿嘧啶(FU)的载药量和扩散特性。及其疏水类似物1,3-二甲基-5-氟尿嘧啶(DMFU)。发现FU具有比DMFU更大的表观扩散系数,并且后者的扩散受到更大的阻碍。相应的冻干样品的〜(19)F自旋扩散NMR结果表明,大部分DMFU驻留在R_f核心/ IPDU中间层区域(其中IPDU表示异佛尔酮二氨基甲酸酯,是连接到R_f基团和PEG链比FU的基团好,而PEG-水相则相反。为了理解实验数据,提出了一种扩散模型,包括:(1)阻碍了药物分子在R_f核心/ IPDU中间层区域的扩散; (2)药物分子在PEG-水相(或区域)中相对自由的扩散; (3)在上述两个区域之间探针分子的扩散交换。这项研究还表明,分子扩散NMR与自旋扩散NMR相结合可用于研究水凝胶中的药物装载和扩散特性,以达到药物输送的目的。

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