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Effect of composition, hydrogenation of phospholipids and lyophilization on the characteristics of eugenol-loaded liposomes prepared by ethanol injection method

机译:组成,磷脂加氢和冻干对乙醇注射法制备的丁香酚负载脂质体特性的影响

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The effect of composition, hydrogenation of phospholipids and lyophilization on liposomes characteristics was investigated. Liposomes were produced by ethanol injection method, employing hydrogenated (Phospholipon 80H, Phospholipon 90H) or non-hydrogenated soybean phosphatidylcholine (Lipoid S100) with cholesterol. Using Phospholipon 80H, cholesterol addition was crucial for liposomal homogeneity. Phospholipids concentration, stirring rate, and ethanol/water volume ratio were the most determinant factors controlling the vesicles size. Phospholipid assays showed that saturated phospholipids resulted in higher incorporation in vesicles than unsaturated ones. Smaller vesicles were obtained with Phospholipon 80H, due to lower content of phosphatidylcholine and to the presence of phosphatidy-lethanolamine which might increase repulsion between phospholipids, resulting in an increase in Zeta-potential and a decrease in vesicle size. TEM images revealed nanometric sized and spherical shaped oligo-lamellarvesicles. Although Lipoid S100 liposomes possessed the highest encapsulation efficiency of eugenol (86.6%), they were not stable in aqueous suspension at 4 °C after 2 months of storage, limiting their use in freeze-drying. Among several cryoprotectants, hydroxylpropyl-P-cyclodextrin protected eugenol-loaded Phospholipon 90H liposomes during freeze-drying as the mean vesicle size, poly-dispersity index, Zeta potential and encapsulation efficiency of eugenol were similar before and after lyophilization.This study demonstrated the possibility of maintaining a volatile essential oil in a suitable lyophilized liposomal formulation despite the very low applied pressures.
机译:研究了组成,磷脂加氢和冻干对脂质体特性的影响。脂质体是通过乙醇注射法,使用氢化(磷脂80H,磷脂90H)或未氢化的大豆磷脂酰胆碱(脂质S100)与胆固醇来制备的。使用磷脂80H,添加胆固醇对于脂质体的均质性至关重要。磷脂浓度,搅拌速率和乙醇/水体积比是决定囊泡大小的最主要因素。磷脂分析显示,与不饱和磷脂相比,饱和磷脂在囊泡中的掺入率更高。由于磷脂酰胆碱的含量较低和磷脂酰乙醇胺的存在,磷脂80H可获得较小的囊泡,磷脂酰乙醇胺的存在可能会增加磷脂之间的排斥力,导致Zeta电位增加和囊泡大小减小。 TEM图像显示了纳米尺寸和球形的寡层状小泡。尽管Lipoid S100脂质体具有最高的丁香酚包封率(86​​.6%),但它们在储存2个月后在4°C的水悬浮液中不稳定,从而限制了它们在冷冻干燥中的使用。在几种冷冻保护剂中,冻干前后丁香酚的平均囊泡大小,多分散指数,Zeta电位和包封效率相似,因此在冷冻干燥过程中羟丙基-P-环糊精保护的丁香酚磷脂90H脂质体得到了保护。尽管施加了非常低的压力,仍将挥发性挥发油保持在合适的冻干脂质体制剂中。

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