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首页> 外文期刊>International Journal of Nanomedicine >Preparation of 5-fluorouracil nanoparticles by supercritical antisolvents for pulmonary delivery
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Preparation of 5-fluorouracil nanoparticles by supercritical antisolvents for pulmonary delivery

机译:用超临界抗溶剂制备5-氟尿嘧啶纳米颗粒用于肺部递送

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Abstract: This study concerns the supercritical antisolvent process which allows single-step production of 5-fluorouracil (5-FU) nanoparticles. This process enhances the physical characteristics of 5-FU in order to deliver it directly to the respiratory tract. Several mixtures of methanol with dichloromethane, acetone, or ethanol were used for particle preparation, and their effects on the physical characteristics of the final products were studied. The conditions of the experiment included pressures of 100 and 150 bar, temperature of 40°C, and a flow rate of 1 mL/min. The particles were characterized physicochemically before and after the process for their morphology and crystallinity. In spite of differences in size, the particles were not very different regarding their morphology. The resulting particles were of a regular shape, partly spherical, and appeared to have a smooth surface, whereas the mechanically milled particles showed less uniformity, had surface irregularities and a high particle size distribution, and seemed aggregated. Particles of 5-FU precipitated from methanol-dichloromethane 50:50 had a mean particle size of 248 nm. In order to evaluate the aerodynamic behavior of the nanoparticles, six 5-FU dry powder formulations containing mixtures of coarse and fine lactose of different percentages were prepared. Deposition of 5-FU was measured using a twin-stage liquid impinger and analyzed using a validated high pressure liquid chromatography method. Addition of fine lactose improved the aerodynamic performance of the drug, as determined by the fine particle fraction.
机译:摘要:这项研究涉及允许单步生产5-氟尿嘧啶(5-FU)纳米粒子的超临界抗溶剂工艺。此过程增强了5-FU的物理特性,以便将其直接传递到呼吸道。甲醇与二氯甲烷,丙酮或乙醇的几种混合物用于制备颗粒,并研究了它们对最终产品物理特性的影响。实验条件包括压力为100和150 bar,温度为40°C,流速为1 mL / min。在处理之前和之后对它们的形态和结晶性进行物理化学表征。尽管尺寸不同,但是颗粒的形态并没有很大差异。所得颗粒为规则形状,部分为球形,并且看起来具有光滑的表面,而机械研磨的颗粒显示出较低的均匀性,具有表面不规则性和高粒度分布,并且似乎聚集。从甲醇-二氯甲烷50:50沉淀的5-FU颗粒的平均粒径为248 nm。为了评估纳米颗粒的空气动力学行为,制备了含有不同百分比的粗和细乳糖混合物的六种5-FU干粉制剂。使用双级液体冲击器测量5-FU的沉积,并使用经过验证的高压液相色谱法进行分析。如细颗粒分数所确定的,添加细乳糖改善了药物的空气动力学性能。

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