Dry Powder and Budesonide Inhalation Suspension Deposition Rates in Asthmatic Airway-Obstruction Regions

Author:

Murayama Norihide1ORCID,Asai Kei2,Murayama Kikuno1,Doi Satoru3,Kameda Makoto4

Affiliation:

1. Department of Pediatrics, Murayama Pediatrics, 3-2-33 Nagayoshi-Nagahara-Higashi Hirano-ku Osaka-shi, 547-0013 Osaka, Japan

2. Omron Healthcare Co. Ltd., 53 Kunotsubo, Terado-cho, Muko-shi, 617-0002 Kyoto, Japan

3. Department of Education, IBU Shitennnouji University, 3-2-1 Gakuenmae, Habikino, Osaka 583-8501, Japan

4. Department of Pediatrics, Osaka Habikino Medical Center, 3-7-1 Habikino Habikino-shi, Osaka, Japan

Abstract

Steroid inhalation is the standard bronchial asthma therapy and it includes powdered metered doses, dry powder, and nebulizer suspension. However, particle sizes vary widely. The research goal was to demonstrate that different budesonide administration forms and devices have various deposition rates in the airway obstruction region. Here, we compared relative inhalation therapy efficacies and identified therapies that delivered the highest drug doses to the airway obstruction region. Weibel’s anatomy data were used to identify the airway obstruction region in asthma. Based on European Standardization Committee data, we investigated the diameters of the drug particles being deposited there and evaluated the average particle size and distribution of the budesonide dosage forms and application devices. Drug dose depositions were measured by HPLC at each stage of a Cascade Impactor. Weibel’s anatomy data indicated that the 1st–4th bronchial generations comprised the airway obstruction region and corresponded to the tracheobronchial area. According to the European Standardization, particles 2–6 µm in diameter were readily deposited there. The proportions of particles in this size range were 33.0%, 32.0%, 59.0%, and 78.0% for Turbuhaler, Symbicort, mesh-type NE-U22 suspension, and jet-type NE-C28 suspension, respectively. We localized the airway obstruction regions of bronchial asthma and identified the optimal inhalation therapy particle size. An electric nebulizer was more efficacious for budesonide administration than dry powder delivery. The NE-C28 treatment deposited 2.36x more budesonide in the airway obstruction region than dry powder delivery systems.

Publisher

Hindawi Limited

Subject

Automotive Engineering

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