Laboratory of Future Nanomedecines and Theoretical Chronopharmaceutics, Division of Pharmaceutical Sciences, University of Missouri-Kansas City, Kansas City, MO 64108, USA.
Colloids Surf B Biointerfaces. 2012 Jun 1;94:133-42. doi: 10.1016/j.colsurfb.2012.01.027. Epub 2012 Jan 31.
This study was designed to test the hypothesis that furosemide (Fur) can be entrapped into surfactant free pegylated nanocarriers (NCs) for controlled drug release. To test this hypothesis, Fur-loaded NCs were prepared by emulsion solvent diffusion method. A 2(3) factorial design was used to optimize the effect of three formulation variables [amounts of Fur (X(1)), poly(lactic-co-glycolic acid) (X(2)) and poly-ε-caprolactone-polyethylene glycol (X(3))] on particle mean diameter (Y(1)), polydispersity index (PDI, Y(2)), and percent drug encapsulation efficiency (EE%, Y(3)). The NCs were characterized for morphology, thermal behavior, optical properties, crystallinity, and drug release kinetics using electron microscopy (EM), differential scanning calorimetry (DSC), Fourier transform infrared (FTIR) spectroscopy, powder X-ray diffraction (PXRD), and high performance liquid chromatography, respectively. The optimum formula produced with 6 mg of Fur, 7 mg of PLGA, and 1mg of PCL-PEG corresponded to 183.26 nm, 0.26, and 88.29% as Y(1), Y(2) and Y(3) values, respectively. DSC thermograms, FTIR spectra and PXRD diffractograms indicated that Fur was encapsulated in its polymorphic crystalline form I within the NCs polymeric matrix. This was further confirmed by a comparative study between native Fur, Fur nanocrystal and Fur loaded NCs using scanning EM, PXRD and drug release kinetics. The release kinetics of the optimized formula fit the Higuchi model indicating that the drug was released by diffusion in 12h. These results indicate that pegylated Fur-loaded NCs could be successfully prepared with high EE% and sustained release profile intended for the inner ear drug delivery.
这项研究旨在测试呋塞米(Fur)可以被包裹在无表面活性剂的聚乙二醇化纳米载体(NCs)中以实现控制药物释放的假设。为了验证这一假设,通过乳液溶剂扩散法制备了载 Fur 的 NCs。采用 2(3) 析因设计优化了三个制剂变量[Fur 的量(X(1))、聚(乳酸-共-乙醇酸)(X(2))和聚己内酯-聚乙二醇(X(3))]对颗粒平均直径(Y(1))、多分散指数(PDI,Y(2))和药物包封效率(EE%,Y(3))的影响。通过电子显微镜(EM)、差示扫描量热法(DSC)、傅里叶变换红外光谱(FTIR)、粉末 X 射线衍射(PXRD)和高效液相色谱法分别对 NCs 的形态、热行为、光学性质、结晶度和药物释放动力学进行了表征。使用 6mg Fur、7mg PLGA 和 1mg PCL-PEG 的最佳配方对应于 183.26nm、0.26 和 88.29%的 Y(1)、Y(2)和 Y(3)值。DSC 热图谱、FTIR 光谱和 PXRD 衍射图谱表明,Fur 以其多晶型 I 结晶形式被包裹在 NCs 聚合物基质中。这通过对天然 Fur、Fur 纳米晶体和载 Fur 的 NCs 进行扫描 EM、PXRD 和药物释放动力学的比较研究得到了进一步证实。优化配方的释放动力学符合 Higuchi 模型,表明药物在 12h 内通过扩散释放。这些结果表明,聚乙二醇化载 Fur 的 NCs 可以成功制备,具有高 EE%和持续释放特性,可用于内耳药物输送。