Department of Pharmacy, Liaoning Cancer Hospital and Institute, Shenyang, People's Republic of China.
Shanghai Institute of Materia Medica, Chinese Academy of Science, Shanghai, People's Republic of China.
Int J Nanomedicine. 2014 Mar 31;9:1665-76. doi: 10.2147/IJN.S59463. eCollection 2014.
In this work, an ultrasonic spray freeze-drying (USFD) technique was used to prepare a stable liposomal dry powder for transdermal delivery of recombinant human epithelial growth factor (rhEGF). Morphology, particle size, entrapment efficiency, in vitro release, and skin permeability were systematically compared between rhEGF liposomal dry powder prepared using USFD and that prepared using a conventional lyophilization process. Porous and spherical particles with high specific area were produced under USFD conditions. USFD effectively avoided formation of ice crystals, disruption of the bilayer structure, and drug leakage during the liposome drying process, and maintained the stability of the rhEGF liposomal formulation during storage. The reconstituted rhEGF liposomes prepared from USFD powder did not show significant changes in morphology, particle size, entrapment efficiency, or in vitro release characteristics compared with those of rhEGF liposomes before drying. Moreover, the rhEGF liposomal powder prepared with USFD exhibited excellent enhanced penetration in ex vivo mouse skin compared with that for powder prepared via conventional lyophilization. The results suggest that ultrasonic USFD is a promising technique for the production of stable protein-loaded liposomal dry powder for application to the skin.
在这项工作中,采用超声喷雾冷冻干燥(USFD)技术制备了一种稳定的载重组人表皮生长因子(rhEGF)的脂质体干粉,用于经皮给药。系统比较了 USFD 和传统冻干工艺制备的 rhEGF 脂质体干粉的形态、粒径、包封效率、体外释放和皮肤渗透性。在 USFD 条件下,生成了具有高比表面积的多孔和球形颗粒。USFD 有效地避免了冰晶的形成、双层结构的破坏和药物在脂质体干燥过程中的泄漏,并且在储存过程中保持了 rhEGF 脂质体制剂的稳定性。与干燥前的 rhEGF 脂质体相比,由 USFD 粉末重新配制的 rhEGF 脂质体在形态、粒径、包封效率或体外释放特性方面没有明显变化。此外,与通过常规冻干制备的粉末相比,用 USFD 制备的 rhEGF 脂质体粉末在离体小鼠皮肤中表现出优异的增强渗透作用。结果表明,超声 USFD 是一种有前途的技术,可用于生产稳定的载蛋白脂质体干粉,应用于皮肤。