School of Dentistry, Taipei Medical University, Taipei 110, Taiwan, China.
AAPS J. 2010 Jun;12(2):138-46. doi: 10.1208/s12248-009-9172-6. Epub 2010 Jan 26.
The purpose of this study was to examine the properties of a new pulmonary delivery platform of microparticles containing micelles in which a therapeutic photosensitizing drug, hematoporphyrin (Hp), was encapsulated. Different poloxamers were used to form micellar Hp, and one of these, Pluronic L122-Hp, was subsequently incorporated into lactose microparticles by spray-drying. Spectral and morphological analyses were performed on both micellar Hp, and lactose microparticles containing micellar Hp (lactose-micellar Hp) before and after dissolution of the microparticles in water. Photodynamic activity of the various Hp samples were evaluated in human lung epithelial carcinoma A549 cells using a light-emitting diode (LED) device at a wavelength of 630 +/- 5 nm. No significant difference was observed between micellar Hp and lactose-micellar Hp regarding the generation of singlet oxygen. The mean particle size of the microparticles was 2.3 +/- 0.7 microm which is within the size range for potential lung delivery. The cellular uptake of micellar Hp and lactose-micellar Hp measured on A549 cells was at least twofold higher than those obtained with the Hp at equivalent concentrations. Micellar Hp exhibited higher cytotoxicity than Hp due to reduced formation of Hp aggregates and increased cellar uptake. The spectral properties as well as the photodynamic activity of the micellar Hp was retained when formulated into microparticles by spray-drying. Microparticles containing micelles have the potential for delivering micelle-encapsulated hydrophobic drugs in targeted therapy of pulmonary diseases.
本研究旨在考察一种新型肺部给药平台的性质,该平台由载药胶束的微粒组成,其中包封了一种治疗光敏药物血卟啉(Hp)。使用不同的泊洛沙姆形成胶束 Hp,其中一种泊洛沙姆 L122-Hp 随后通过喷雾干燥被包封入乳糖微粒中。在水溶解微粒前后,对胶束 Hp 和载有胶束 Hp 的乳糖微粒(乳糖-胶束 Hp)进行光谱和形态分析。使用发光二极管(LED)装置在波长为 630 +/- 5nm 下,在人肺上皮癌细胞 A549 中评估各种 Hp 样品的光动力活性。胶束 Hp 和乳糖-胶束 Hp 在生成单线态氧方面没有观察到显著差异。微粒的平均粒径为 2.3 +/- 0.7μm,处于潜在的肺部给药粒径范围内。在 A549 细胞上测量的胶束 Hp 和乳糖-胶束 Hp 的细胞摄取量至少是等效浓度下 Hp 摄取量的两倍。由于 Hp 聚集物形成减少和细胞摄取增加,胶束 Hp 表现出比 Hp 更高的细胞毒性。通过喷雾干燥将胶束 Hp 制成微粒时,其光谱性质和光动力活性得以保留。载有胶束的微粒具有在肺部疾病靶向治疗中递送包封有胶束的疏水性药物的潜力。