Niwa T, Takeuchi H, Hino T, Kawashima Y
Pharmaceutical Engineering Laboratory, Gifu Pharmaceutical University, Japan.
Yakugaku Zasshi. 1995 Sep;115(9):732-41. doi: 10.1248/yakushi1947.115.9_732.
Lactide/glycolide copolymer (PLGA) nanospheres with nafarelin acetate (NA) used as a model peptide-drug have been developed by the emulsion-phase separation method in an oil phase as reported previously. In the present study, the aerosolization of nanospheres in dry and wet dispersion methods was investigated in vitro to evaluate their applications to pulmonary delivery of peptide-drug. The size distribution of aerosolized nanosphere dispersions and pulmonary deposition behaviors of inhaled particles were investigated using a lazer diffraction light-scattering particle sizer and an artificial model lung (Cascade Impactor: CI), respectively. It was found that the freeze-drying of nanospheres with a hydrophilic surface active agent effectively improved the inhalation behavior. Further, the mixing of nanospheres with lactose led to the reduction of their adhesion to an inhalation device (Spinhaler). It was supposed that the mists of nanosphere-suspension generated from a jet nebulizer might be inhaled into the lower bronchus and alveolus, because their respirable fraction (RF) value, i.e., the deposition percentage on stage 2 to 6 of CI, defined as a pulmonary inhalation index, reached a maximum of over 50%.
如先前报道,已通过油相中的乳液相分离法制备了以醋酸那法瑞林(NA)作为模型肽药物的丙交酯/乙交酯共聚物(PLGA)纳米球。在本研究中,对纳米球在干法和湿法分散方法中的雾化进行了体外研究,以评估其在肽药物肺部给药中的应用。分别使用激光衍射光散射粒度仪和人工模型肺(多级撞击采样器:CI)研究了雾化纳米球分散体的粒度分布和吸入颗粒的肺部沉积行为。发现使用亲水性表面活性剂对纳米球进行冷冻干燥可有效改善吸入行为。此外,纳米球与乳糖混合可减少其对吸入装置(Spinhaler)的粘附。据推测,由喷射雾化器产生的纳米球悬浮液雾滴可能会被吸入下支气管和肺泡,因为其可吸入分数(RF)值,即定义为肺部吸入指数的CI第2至6阶段的沉积百分比最高可达50%以上。