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氟尿苷二乙酸酯脂质固体纳米粒的制备
http://www.100md.com 《第四军医大学学报》 2006年第3期
固体,,氟尿苷;固体脂质纳米粒;靶向给药系统,0引言,1材料和方法,2结果,3讨论,【参考文献】
     Preparation of floxuridine diacetate solid lipid nanoparticles

    LIAN JiaFang,ZHANG SanQi,GU Yi,SHI XiaoPeng,XI MiaoMiao

    1Department of Pharmacy,Xijing Hospital,Xian 710033, China, 2Bethune Military Medical College, Shijiazhuang 050081, China, Fourth Military Medical University

    【Abstract】 AIM: To prepare floxuridine diacetate solid lipid nanoparticles (FUDRASLN) so as to improve the treatment efficacy and reduce the side effects of floxuridine (FUDR). METHODS: FUDR was esterified with acetic anhydride in the presence of pyridine and 4dimethylaminopyridine. The structure of expected compound, floxuridine diacetate (FUDRA),was identified by proton nuclear magnetic resonance. The stability of FUDRA in mouse serum and tissue homogenates and octanolbuffer partition coeffient of FUDRA were investigated by reversed phase high performance liquid chromatography (RPHPLC). FUDRA was used to prepare FUDRASLN by dry membrane technique. Transmission electron microscopy was employed to study the shape and particle diameter distribution of FUDRASLN. Drug loading and entrapment efficiency were also determined by RPHPLC. RESULTS: FUDRA was more stable in weak acid solution than in base solution, hydrolyzed fast in serum and tissue homogenates, especially in liver homogenate. The partition coefficient of FUDRA was 58.13. The diameter distribution of FUDRASLN was (208±53) nm, drug loading was 7.63% and entrapment efficiency was 94.21%. CONCLUSION: The lipophilicity of FUDR is dramatically increased after esterification with acetic anhydride. FUDRASLN has a high entrapment efficiency and a good distribution in size. ......

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