Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmaceutical Sciences, Chulalongkorn University, Bangkok, 10330, Thailand.
AAPS PharmSciTech. 2010 Jun;11(2):832-42. doi: 10.1208/s12249-010-9442-8. Epub 2010 May 13.
The influence of cholesterol (Chol) in the liposomal bilayer on the properties of inhalable protein-loaded liposomal powders prepared by spray-drying technique was investigated. Lysozyme (LSZ) was used as a model protein. Feed solution for spray drying was prepared by direct mixing of aqueous solution of LSZ with mannitol solution and empty liposome dispersions composed of hydrogenated phosphatidylcholine and Chol at various molar ratios. The spray-dried powders were characterized with respect to morphology, thermal property, and crystallinity using scanning electron microscopy, differential scanning calorimetry, and X-ray diffraction, respectively. Most formulations gave slightly aggregated, spherical particles, and percentage yields of the spray-dried powders decreased with increasing Chol content. Degree of particle aggregation depended on the powder composition. The powders spontaneously formed liposomes which efficiently entrapped LSZ after reconstitution with HEPES buffered saline (HBS) at 37 degrees C. Lysozyme entrapment efficiency and size distribution of the reconstituted liposomes were evaluated after the powders were reconstituted with HBS. Increasing Chol content resulted in a decrease in size of the reconstituted liposomes and an increase in entrapment efficiency of LSZ. These results correlated with thermal behaviors of the reconstituted liposomes. Biological activity of LSZ was not affected by the spray-drying process. It was also demonstrated that LSZ-loaded liposomal powders could be produced without the need to preload the LSZ into liposomes prior to spray-drying process.
研究了脂质体双层中胆固醇(Chol)对喷雾干燥技术制备可吸入载脂蛋白脂质体粉末性质的影响。溶菌酶(LSZ)用作模型蛋白。喷雾干燥用进料溶液通过 LSZ 的水溶液与甘露醇溶液以及由氢化磷脂酰胆碱和 Chol 以各种摩尔比组成的空脂质体分散体的直接混合来制备。通过扫描电子显微镜、差示扫描量热法和 X 射线衍射分别对喷雾干燥粉末的形态、热性质和结晶度进行了表征。大多数配方给出了略微聚集的球形颗粒,并且随着 Chol 含量的增加,喷雾干燥粉末的产率降低。颗粒聚集的程度取决于粉末的组成。这些粉末在 37°C 下用 HEPES 缓冲盐水(HBS)再构成时会自发形成脂质体,有效地包封 LSZ。再构成后评估了 LSZ 的包封效率和再构成脂质体的粒径分布。随着 Chol 含量的增加,再构成脂质体的粒径减小,LSZ 的包封效率增加。这些结果与再构成脂质体的热行为相关。LSZ 的生物学活性不受喷雾干燥过程的影响。还表明可以在不需要在喷雾干燥过程之前将 LSZ 预先加载到脂质体中的情况下生产载脂蛋白脂质体粉末。