壳聚糖
Zeta电位
分散性
去唾液酸糖蛋白受体
莱迪帕斯维尔
脂质体
化学
体内
体外
粒径
最大值
色谱法
药代动力学
药理学
生物化学
材料科学
纳米颗粒
医学
纳米技术
肝细胞
有机化学
生物
生物技术
物理化学
利巴韦林
基因型
基因
作者
Ahmed M. Fatouh,Ahmed Hassen Elshafeey,Ahmed Abdelbary
标识
DOI:10.1016/j.xphs.2020.10.002
摘要
Abstract
Ledipasvir is a novel antiviral agent used in the treatment of hepatitis C. We aim in our study to increase its delivery to hepatocytes and prolong its retention within liver. Several formulae of ledipasvir loaded liposomes were prepared and the best formula regarding particle size, zeta potential, polydispersity index and entrapment efficiency was selected. On the other hand, galactosylated chitosan was synthesized in a chemical reaction. Then the best liposomes formula was coated with the galactosylated chitosan. Having galactose residues on their surface, the coated liposomes can bind to the asialoglycoprotein receptors on the targeted hepatocytes enhancing ledipasvir uptake into them. The galactosylated chitosan coated liposomes had particle size of 218.2 nm ± 7.21, zeta potential of 27.15 mV ± 1.76, polydispersity index of 0.278 ± 0.055 and entrapment efficiency % of 54.63% ± 0.05 respectively. The pharmacokinetic study revealed a significant increase in the liver peak concentration (Cmax) and the area under liver concentration versus time curve AUC(0–72 h) and significant prolongation in the liver terminal half life (t½) and mean residence time (MRT) in comparison to the oral dispersion of ledipasvir with values of 11,400 ng/g, 88,855 ng∗h/g, 32.00 h and 18.11 h respectively.
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