脂质体
磷脂酰胆碱
化学
阳离子聚合
色谱法
化学工程
控制释放
阳离子脂质体
十六烷
渗透(战争)
水溶液
生物物理学
膜
有机化学
生物化学
工程类
遗传增强
基因
生物
磷脂
运筹学
作者
Qing Wang,Edith C. Rojas,Kyriakos D. Papadopoulos
标识
DOI:10.1016/j.jcis.2012.06.036
摘要
Liposomes containing a model active component were entrapped within the internal aqueous phase (W1) of W1/O/W2 double emulsions, thus providing a double-encapsulation system. Our motivation for the development of this system is to prevent liposomes from interacting with unfavorable physicochemical conditions and to optimize this system for dermal vaccine delivery. The choice of cationic liposomes is based on the fact that they have high penetration ability across the skin and hair follicles, and an adjuvant effect on the activation of antigen-presenting cells. Cryo-SEM images showed that liposomes are well encapsulated within the W1 phase, indicating that most liposomes remain intact during the homogenization step of formulation fabrication. Freezing the n-hexadecane oil (O) phase of the double-encapsulation formulations preserved their stability during the storage, and subsequent oil-thawing induced progressive release of liposomes and their contents. The release mechanism upon the freeze–thaw treatment was internal coalescence followed by external coalescence. Our results also indicated that tuning the concentration of l-α-phosphatidylcholine (PC) lipid in the cationic liposomes can control the release rate from the double-encapsulation formulations.
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