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The Effect of Particle Size and Surface Roughness of Spray-Dried Bosentan Microparticles on Aerodynamic Performance for Dry Powder Inhalation

机译:喷雾干燥的膈肌微粒对干粉吸入的空气动力学性能的粒度和表面粗糙度的影响

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摘要

The purpose of this study was to prepare spray dried bosentan microparticles for dry powder inhaler and to characterize its physicochemical and aerodynamic properties. The microparticles were prepared from ethanol/water solutions containing bosentan using spray dryer. Three types of formulations (SD60, SD80, and SD100) depending on the various ethanol concentrations (60%, 80%, and 100%, respectively) were used. Bosentan microparticle formulations were characterized by scanning electron microscopy, powder X-ray diffraction, laser diffraction particle sizing, differential scanning calorimetry, Fourier-transform infrared spectroscopy, dissolution test, and in vitro aerodynamic performance using Andersen cascade impactor (ACI) system. In addition, particle image velocimetry (PIV) system was used for directly confirming the actual movement of the aerosolized particles. Bosentan microparticles resulted in formulations with various shapes, surface morphology, and particle size distributions. SD100 was a smooth surface with spherical morphology, SD80 was a rough surfaced with spherical morphology and SD60 was a rough surfaced with corrugated morphology. SD100, SD80, and SD60 showed significantly high drug release up to 1 h compared with raw bosentan. The aerodynamic size of SD80 and SD60 was 1.27 µm and SD100 was 6.95 µm. The microparticles with smaller particle size and a rough surface aerosolized better (%FPF: 63.07 ± 2.39 and 68.27 ± 8.99 for SD60 and SD80, respectively) than larger particle size and smooth surface microparticle (%FPF: 22.64 ± 11.50 for SD100).
机译:本研究的目的是制备用于干粉吸入器的喷雾干燥的孔丹微粒,并表征其物理化学和空气动力学性质。使用喷雾干燥器用含有苄醇的乙醇/水溶液制备微粒。使用三种类型的制剂(SD60,SD80和SD100),取决于各种乙醇浓度(分别为60%,80%和100%)。通过扫描电子显微镜,粉末X射线衍射,激光衍射粒度,傅立叶变换的红外光谱,溶出试验和使用Andersen Cascade撞击器(ACI)系统的体外空气动力学性能进行了表征博静脉微粒制剂。另外,粒子图像速度仪(PIV)系统用于直接确认雾化颗粒的实际运动。 Bosentan微粒导致配方具有各种形状,表面形态和粒度分布。 SD100是一种光滑的表面,具有球形形态,SD80是具有球形形态的粗糙表面,SD60具有粗糙的形态粗糙。 SD100,SD80和SD60显示出高达1小时的药物释放显着高达1小时。 SD80和SD60的空气动力学尺寸为1.27μm,SD100为6.95μm。粒径较小的微粒和粗糙表面雾化较好(分别为SD60和SD80的%FPF:63.07±2.39和68.27±8.99)比较大的粒度和光滑的表面微粒(SD100的%FPF:22.64±11.50)。

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