Pornputtapitak Warangkana, El-Gendy Nashwa, Mermis Joel, O'Brien-Ladner Amy, Berkland Cory
Department of Pharmaceutical Chemistry, University of Kansas, Lawrence, KS, USA.
Department of Pharmaceutical Chemistry, University of Kansas, Lawrence, KS, USA; Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Beni-suef University, Egypt.
Int J Pharm. 2014 Feb 28;462(1-2):19-28. doi: 10.1016/j.ijpharm.2013.12.030. Epub 2013 Dec 25.
Agglomerates of budesonide nanoparticles (also known as 'NanoClusters') are fine dry powder aerosols that were hypothesized to enable drug delivery through ventilator circuits. These engineered powders were delivered via a Monodose inhaler or a novel device, entrained through commercial endotracheal tubes, and analyzed by cascade impaction. Inspiration flow rates and other parameters such as inspiration patterns and inspiration volumes were controlled by a ventilator. NanoCluster budesonide (NC-Bud) formulations had a higher efficiency of aerosol delivery compared to micronized budesonide with NC-Bud showing a much higher percent emitted fraction (%EF). Different inspiration patterns (sine, square, and ramp) did not affect the powder performance of NC-Bud when applied through a 5.0 mm endotracheal tube. The aerosolization of NC-Bud also did not change with the inspiration volume (1.5-2.5 L) nor with the inspiration flow rate (20-40 L/min) suggesting fast emptying times for budesonide capsules. The %EF of NC-Bud was higher at 51% relative humidity compared to 82% RH. The novel device and the Monodose showed the same efficiency of drug delivery but the novel device fit directly to a ventilator and endotracheal tubing connections. The new device combined with NanoCluster formulation technology allowed convenient and efficient drug delivery through endotracheal tubes.
布地奈德纳米颗粒聚集体(也称为“纳米簇”)是细干粉气雾剂,据推测可通过呼吸机回路实现药物递送。这些工程粉末通过单剂量吸入器或一种新型装置递送,经商用气管内导管夹带,并通过多级冲击采样器进行分析。吸气流量和其他参数,如吸气模式和吸气量,由呼吸机控制。与微粉化布地奈德相比,纳米簇布地奈德(NC-Bud)制剂具有更高的气溶胶递送效率,NC-Bud的喷出分数百分比(%EF)要高得多。当通过5.0毫米气管内导管应用时,不同的吸气模式(正弦、方波和斜坡)不会影响NC-Bud的粉末性能。NC-Bud的雾化也不会随吸气量(1.5 - 2.5升)或吸气流量(20 - 40升/分钟)而改变,这表明布地奈德胶囊的排空时间很快。与82%相对湿度相比,NC-Bud在51%相对湿度下%EF更高。新型装置和单剂量吸入器显示出相同的药物递送效率,但新型装置可直接与呼吸机和气管内导管连接。新装置与纳米簇制剂技术相结合,可实现通过气管内导管方便、高效的药物递送。