布地奈德
干粉吸入器
吸入
化学
材料科学
色谱法
医学
吸入器
麻醉
哮喘
内科学
作者
Dong–Won Oh,Ji Hoon Choi,G. Yu,Bo Kyung Kim,Sang Min Cho,Youn Woong Choi,Jin-Hyuk Jeong,Ji–Hyun Kang,Dong‐Wook Kim,Chun‐Woong Park
标识
DOI:10.1080/10837450.2024.2413145
摘要
Asthma and Chronic Obstructive Pulmonary Disease (COPD) are major global health concerns, with inhalation therapy being a primary treatment method. Dry powder inhalers (DPIs) often face challenges related to particle aggregation, which can diminish drug delivery efficiency. This study investigates particle aggregation and aims to optimize the cohesion-adhesion balance to improve inhalation efficiency. Advanced techniques like atomic force microscopy and Raman imaging were used to analyze particle interactions, focusing on lactose ratios, particle morphology, and drug-drug interactions. The therapeutic efficacy of optimized formulations containing budesonide (BUD) and Arformoterol (AFT) was assessed using an asthma model, showing significant improvements in sRAW, neutrophil count, and tidal volume compared to the positive control, with
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