The Pharmacokinetics Lab, Anhui University of Chinese Medicine , Hefei 230038 , China.
Drug Deliv. 2013 Sep-Oct;20(7):277-84. doi: 10.3109/10717544.2013.836618.
Gambogenic acid (GNA), a popular Chinese traditional medicine, has its limitations of coming into use due to its low aqueous solubility and poor bioavailability. In this study, therefore, the PEGylated non-ionic surfactant vesicles drug delivery systems were prepared from biocompatible non-ionic surfactant of Span60, cholesterol and dicetyl phosphate (DCP) by the improved ethanol injection method, and were modified with a polyethylene glycol monostearate15 (PEG15-SA). PEG15-SA, as a biocompatible, non-toxic and non-immunogenic hydrophilic segment, was grafted onto the surface of colloidal niosomes carries to reduce the uptake by the reticuloendothelial system (RES), prolonging the circulation time and attaining higher entrapment efficiency. To our knowledge, this work is the first to report that PEG15-SA was applied to coating of niosomes for encapsulation of GNA. The optimized PEG-GNA-NISVs (P-GNA-NISVs) were characterized in terms of mean vesicles size, polydispersity index (PDI), Zeta potential and entrapment efficiency of the P-GNA-NISVs. The results showed that the mean diameter, PDI, Zeta potential, and the entrapment efficiency of the P-GNA-NISVs were 70.1 nm, 0.166, -44.3 mV and 87.74%, respectively. Furthermore, the release studies of GNA from PEGylated niosomes in vitro and the pharmacokinetics in vivo exhibited a prolonged release profile as studied over 24 h. In conclusion, the result suggests that P-GNA-NISVs prepared in this way not only have higher encapsulation capacity, more colloidal stability but also offer an approach that the PEGylated niosomes is a promising carrier for anticancer GNA.
没食子酸(GNA)是一种流行的中药,由于其水溶性低和生物利用度差,其应用受到限制。因此,本研究采用改进的乙醇注入法,以生物相容性非离子表面活性剂 Span60、胆固醇和双十六烷基磷酸酯(DCP)为原料,制备了聚乙二醇化非离子表面活性剂囊泡给药系统,并以单硬脂酸聚乙二醇 15(PEG15-SA)进行修饰。PEG15-SA 作为一种生物相容性、无毒、非免疫原性的亲水性片段,接枝到胶体载药囊泡的表面,以减少网状内皮系统(RES)的摄取,延长循环时间,达到更高的包封效率。据我们所知,这是首次报道将 PEG15-SA 应用于囊泡的包覆以包封 GNA。优化后的 PEG-GNA-NISVs(P-GNA-NISVs)在平均囊泡粒径、多分散指数(PDI)、Zeta 电位和 P-GNA-NISVs 的包封效率等方面进行了表征。结果表明,P-GNA-NISVs 的平均粒径、PDI、Zeta 电位和包封效率分别为 70.1nm、0.166、-44.3mV 和 87.74%。此外,体外 PEG 化囊泡中 GNA 的释放研究和体内药代动力学研究表明,在 24 小时的研究中呈现出延长的释放曲线。综上所述,结果表明,以这种方式制备的 P-GNA-NISVs 不仅具有更高的包封能力和更胶体稳定性,而且为 PEG 化囊泡作为抗癌 GNA 的有前途的载体提供了一种方法。