非西汀
脂质体
化学
分散性
体内
超声
粒径
类黄酮
细胞毒性
色谱法
生物物理学
体外
生物化学
有机化学
抗氧化剂
生物技术
生物
物理化学
作者
Nathalie Mignet,Johanne Séguin,Miriam Romano,Laura Brullé,Yasmine Touil,Daniel Scherman,Michel Bessodes,Guy G. Chabot
标识
DOI:10.1016/j.ijpharm.2011.04.066
摘要
The natural flavonoid fisetin (3,3′,4′,7-tetrahydroxyflavone) has been shown to possess antiangiogenic and anticancer properties. Because of the limited water solubility of fisetin, our aim was to design and optimize a liposomal formulation that could facilitate its in vivo administration, taking into account the availability and cost of the various components. Several methods were evaluated such as probe sonication, homogeneization, film hydration and lipid cake formation. A selection of lipid and lipid-PEG was also performed via their incorporation in different formulations based on the size of the liposomes, their polydispersity index (PDI) and the fisetin encapsulation yield. An optimal liposomal formulation was developed with P90G and DODA-GLY-PEG2000, possessing a diameter in the nanometer scale (175 nm), a high homogeneity (PDI 0.12) and a high fisetin encapsulation (73%). Fisetin liposomes were stable over 59 days for their particle diameter and still retained 80% of their original fisetin content on day 32. Moreover, liposomal fisetin retained the cytotoxicity and typical morphological effect of free fisetin in different tumour and endothelial cell lines. In conclusion, based on its physico-chemical properties and retention of fisetin biological effects, the developed liposomal fisetin preparation is therefore suitable for in vivo administration.
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