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阿昔洛韦-乙交酯-丙交酯共聚物毫微粒制备工艺的优化选择
引用本文:徐颖,周世文.阿昔洛韦-乙交酯-丙交酯共聚物毫微粒制备工艺的优化选择[J].第三军医大学学报,2000,22(3):253-256.
作者姓名:徐颖  周世文
作者单位:第三军医大学附属新桥医院临床药理基地,重庆,400037
摘    要:目的:筛选制备阿昔洛韦-乙交酯-丙交酯共聚物毫微粒(ACV-PLGA-NP)的优化工艺。方法:单因素试验初选制备ACV-PLGA-NP的pH值范围、聚乙烯醇(Polyvinyl alcohol,PVA)浓度范围、PLGA分子量、药物及丙酮浓度范围。按均匀设计表设计实验,进行结果预测及验证。结果:优化工艺与PLGA分子量及丙酮浓度无关,pH值为1.5,PVA浓度为50mg/ml,ACV浓度为0.8m

关 键 词:阿昔洛韦  乙交酯  丙交酯共聚物  毫微粒

Optimization of the technological process to prepare acyclovir poly (DL-lactic-co-glycolic acid) nanoparticles
XU Ying,ZHOU Shi-wen.Optimization of the technological process to prepare acyclovir poly (DL-lactic-co-glycolic acid) nanoparticles[J].Acta Academiae Medicinae Militaris Tertiae,2000,22(3):253-256.
Authors:XU Ying  ZHOU Shi-wen
Abstract:Objective: To optimize the technological process for the preparation of acyclovir poly (DL lactic co glycolic acid) nanoparticles (ACV PLGA NP) Methods: The range of pH value, the concentration were preliminarily determined with single factor test ACV PLGA NP was prepared with spontaneous emulsification solvent diffusion and the 5 factors and 9 levels for the preparation of ACV PLGA NP were selected with uniform design U 9(9 6) test Results:The molecular weight of PLGA and the concentration of acetone were not related to the optimization of the technological process The pH value was 1 5, the concentration of PVA was 50 mg/ml and the concentration of ACV was 0 8 mg/ml Using these conditions, a white colloidal solution was obtained, in which the drug loading was 6 79%and drug embedding ratio was 61 00% Conclusion: The target variables of ACV PLGA NP prepared with the optimized technological process are within the predicted limits
Keywords:acyclovir  poly(DL  lactic  co  glycolic acid)  nanoparticle  uniform design
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