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Cubic Magnetically Guided Nanoaggregates for Inhalable Drug Delivery: In Vitro Magnetic Aerosol Deposition Study

机译:用于可吸入药物递送的立方磁性引导纳米聚集体:体外磁性气溶胶沉积研究

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摘要

The present work describes the in vitro aerosol deposition and enhanced deaggregation behavior of superparamagnetic iron oxide nanoaggregates (SPIONs). SPIONs were surface-coated with amine functionalized polyrotaxane and were proposed as a carrier for inhalation dry powders. Polyrotaxane is primarily composed of beta cyclodextrin rings which are spontaneously threaded on the block copolymer, poly(propylene glycol) bis(2-aminopropylether). Variable concentrations of surface coating polymers showed controlled manipulation of the crystal size and morphology. Magnetic nanoaggregates fabricated with low concentration of polyrotaxane showed cubic crystal morphology. However, these nanoaggregates exhibited rhombic dodecahedron crystal structure upon increasing the coating polymer concentration. In comparison to the spherical uncoated magnetic nanoparticles, cubic phase magnetic nanoaggregates demonstrated an enhanced in vitro aerosol deposition using magnetic field alignment. This enhancement can be accomplished at low inhalation flow rates (15 and 30 L/min). However, transformation to the cubic crystal structure was observed to be associated with a reduction in the powder geometric standard deviation. Using a mathematical modeling approach, we noted significant enhancement in the deaggregation behavior of inhalation dry powders; that can be achieved with small amounts of magnetic nanoaggregates. Aggregates of cubic nanoparticles showed promise for targeted pulmonary deposition of anticancer drugs.>FigureCubic magnetic nanoaggregates for systemic pulmonary drug delivery
机译:本工作描述了超顺磁性氧化铁纳米聚集体(SPIONs)的体外气溶胶沉积和增强的解聚集行为。 SPIONs用胺官能化的聚轮烷进行了表面涂覆,并被提议作为吸入干粉的载体。聚轮烷主要由自发地穿在嵌段共聚物聚(丙二醇)双(2-氨基丙基醚)上的β-环糊精环组成。可变浓度的表面涂层聚合物显示出对晶体尺寸和形态的受控控制。用低浓度的聚轮烷制备的磁性纳米聚集体显示立方晶体形态。然而,这些纳米聚集体在增加涂层聚合物浓度时显示出菱形十二面体晶体结构。与球形未涂覆的磁性纳米颗粒相比,立方相磁性纳米聚集体显示出使用磁场对准增强的体外气溶胶沉积。这种增强可以在低吸入流量(15和30 L / min)下完成。然而,观察到向立方晶体结构的转变与粉末几何标准偏差的降低有关。使用数学建模方法,我们注意到吸入性干粉的解聚行为得到了显着增强。少量的磁性纳米聚集体可以实现这一点。立方纳米颗粒的聚集体显示了抗癌药物靶向肺沉积的希望。<!-fig ft0-> <!-fig @ position =“ anchor” mode = article f4-> <!-fig mode =“ anchored “ f5-> > Figure <!-fig / graphic | fig / alternatives / graphic mode =” anchored“ m1-> <!-标题a7->用于全身性肺部药物递送的立方磁性纳米聚集体

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