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首页> 外文期刊>Journal of pharmaceutical sciences. >Tuning Aerosol Performance Using the Multibreath Orbital (R) Dry Powder Inhaler Device: Controlling Delivery Parameters and Aerosol Performance via Modification of Puck Orifice Geometry
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Tuning Aerosol Performance Using the Multibreath Orbital (R) Dry Powder Inhaler Device: Controlling Delivery Parameters and Aerosol Performance via Modification of Puck Orifice Geometry

机译:使用Multibreath Orbital(R)干粉吸入器设备调整气溶胶性能:通过修改圆盘孔的几何形状来控制输送参数和气溶胶性能

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The current study presents a new approach to tackle high-dose lung delivery using a prototype multibreath Orbital (R) dry powder inhaler (DPI). One of the key device components is the puck (aerosol sample chamber) with precision-engineered outlet orifice(s) that control the dosing rate. The influence of puck orifice geometry and number of orifices on the performance of mannitol aerosols were studied. Pucks with different orifice configurations were filled with 400 mg of spray-dried mannitol and tested in the Orbital (R) DPI prototype. The emitted dose and overall aerodynamic performance across a number of breaths were studied using a multistage liquid impinger. The aerosol performances of the individual actuations were investigated using in-line laser diffraction. The emptying rate of all pucks was linear between 20% and 80% cumulative drug released (R-2 > 0.98), and the amount of formulation released per breath could be controlled such that the device was empty after 2 to 11 breath maneuvers. The puck-emptying rate linearly related to the orifice hole length (R-2 > 0.95). Mass median aerodynamic diameters of the emitted aerosol ranged from 4.03 to 4.62 m and fine particle fraction (6.4 m) were 50%-66%. Laser diffraction suggested that the aerosol performance and emptying rates were not dependent on breath number, showing consistent size distribution profiles. (c) 2015 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 104:2169-2176, 2015
机译:当前的研究提出了一种使用原型多呼吸Orbital(R)干粉吸入器(DPI)解决高剂量肺部输送的新方法。装置的关键部件之一是圆盘(气溶胶样品室),其带有精密设计的出口孔,这些孔可以控制加料速度。研究了圆盘孔的几何形状和孔数对甘露醇气溶胶性能的影响。用400 mg喷雾干燥的甘露醇填充具有不同孔口构造的小袋,并在Orbital(R)DPI原型中进行测试。使用多级液体冲击器研究了多次呼吸的发射剂量和总体空气动力性能。使用在线激光衍射研究了单个驱动的气溶胶性能。所有冰球的排空速率在20%至80%的累积药物释放之间呈线性关系(R-2> 0.98),并且可以控制每次呼吸释放的制剂量,以使设备在2到11次呼吸操作后排空。圆盘的排空速率与孔口的长度成线性关系(R-2> 0.95)。排放的气溶胶的质量平均空气动力学直径范围为4.03至4.62 m,细颗粒分数(6.4 m)为50%-66%。激光衍射表明,气溶胶性能和排空速率与呼吸次数无关,显示出一致的尺寸分布曲线。 (c)2015年,Wiley Periodicals,Inc.和美国药剂师协会J Pharm Sci 104:2169-2176,2015年

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