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高分辨 fqNMR 揭示的油包水型纳米乳中药物的多相分配与交换。

Multiphase Drug Distribution and Exchange in Oil-in-Water Nanoemulsion Revealed by High-Resolution F qNMR.

机构信息

Northeast Medical Products Laboratory, Office of Regulatory Science, Office of Regulatory Affairs, U.S. Food and Drug Administration, Jamaica, New York 11433, United States.

Division of Therapeutic Performance, Office of Research and Standards, Office of Generic Drugs, Center for Drug Evaluation and Research, U.S. Food and Drug Administration, Silver Spring, Maryland 20993, United States.

出版信息

Mol Pharm. 2022 Jul 4;19(7):2142-2150. doi: 10.1021/acs.molpharmaceut.2c00025. Epub 2022 Jun 3.

Abstract

An oil-in-water (o/w) nanoemulsion (NE), composed of oil globules, stabilized by a surfactant, and dispersed in an aqueous phase, is increasingly developed in complex drug formulation. Kinetically stable NEs are used to formulate hydrophobic drugs and typically provide higher dosage strengths and better content uniformity. However, little is known accurately about drug distribution in its multiphase solution, especially for the possible drug presence in the surfactant (s) phase, the interface layer between the dispersed oil (o) and the continuous water (w) phases. Here, high-resolution F quantitative NMR spectroscopy was applied directly and noninvasively on an o/w NE drug product containing difluprednate (DFPN). The well-resolved F peaks of DFPN depended on the shielding molecules in each phase, which revealed mass-balanced DFPN distribution in multiple phases of (w), (s), and (o) of NE globules at a quantity of 1.8 ± 0.1, 35 ± 2, and 59 ± 3% per labeled content, respectively. Furthermore, the dilution-dependent F peak line broadening and shift suggested a millisecond dynamic exchange between the NE and the less-noticed smaller but thermodynamically stable microemulsion (ME) globules in NE solution. The high-resolution NMR result revealed that the drug availability could be quickly achieved using an o/w NE formulation because of the drug multiphase distribution and the ME-assisted fast drug exchange among globules.

摘要

水包油(o/w)纳米乳(NE)是一种由油滴、表面活性剂稳定的分散在水相中的体系,在复杂药物制剂中得到了越来越多的开发。动力学稳定的 NE 用于包封疏水性药物,通常可以提供更高的剂量强度和更好的含量均匀度。然而,对于药物在多相溶液中的分布,特别是在分散油(o)和连续水(w)相之间的界面层中可能存在的表面活性剂(s)相中药物的存在情况,我们知之甚少。在这里,高分辨率 F 定量 NMR 光谱直接且无创地应用于含有二氟泼尼酯(DFPN)的 o/w NE 药物产品。DFPN 的 F 峰分辨良好,取决于每个相中的屏蔽分子,这表明在 NE 液滴的(w)、(s)和(o)相中,DFPN 的质量平衡分布分别为 1.8±0.1%、35±2%和 59±3%。此外,稀释依赖性 F 峰线展宽和位移表明,在 NE 溶液中,NE 与较小但热力学稳定的微乳液(ME)液滴之间存在毫秒级的动态交换。高分辨率 NMR 结果表明,由于药物的多相分布和 ME 促进的药物在液滴之间的快速交换,o/w NE 制剂可以快速实现药物的可用性。

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