用星点设计-效应面法优化聚乙烯醇-盐酸普萘洛尔多孔水凝胶处方
投稿时间:2018-11-14  修订日期:2019-01-16  点此下载全文
引用本文:张灵娜,张敏新,宋洪涛.用星点设计-效应面法优化聚乙烯醇-盐酸普萘洛尔多孔水凝胶处方[J].药学实践杂志,2019,37(3):222~225
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作者单位E-mail
张灵娜 联勤保障部队900医院, 福建 福州 350000  
张敏新 联勤保障部队900医院, 福建 福州 350000  
宋洪涛 联勤保障部队900医院, 福建 福州 350000 sohoto@vip.163.com 
基金项目:福建省科技厅自然科学基金项目(2018J01185);解放军联勤保障部队900医院院内科研课题(2016L11)
中文摘要:目的 采用星点设计-效应面法优化聚乙烯醇-盐酸普萘洛尔多孔水凝胶的处方。方法 以聚乙烯醇和壳聚糖的用量为考察因素,12 h体外经皮累积渗透量为评价指标,分别用多元线性模型、非线性模型描述考察因素和评价指标之间的关系。根据最佳数学模型绘制效应面和等高线图,确定最优处方。结果 非线性模型中二次多项式拟合的相关系数较高,r=0.970 2,按最佳处方制备的多孔水凝胶12 h累积渗透量预测值与理论值偏差为4.32%,模型具有良好的预测性。结论 该处方应用本设计方法能实现多指标的同步优化,所建立的模型具有良好的预测性,可用于处方优化。
中文关键词:普萘洛尔  循环冷冻-解冻法  星点设计-效应面法
 
Optimization of the formulation of polyvinyl alcohol-propranolol hydrochloride porous hydrogel by central composite design-response surface method
Abstract:Objective To optimize the formulation of polyvinyl alcohol-propranolol hydrochloride porous hydrogel by central composite design-response surface method.Methods The amount of polyvinyl alcohol and chitosan were taken as the investigation factors,the percutaneous cumulative permeation amount in vitro was used as the evaluation index,and the relationship between the investigation index and the investigation factor were described by the multivariate linear model and the nonlinear model.The optimal formulation was determined by plotting the effect surface and the contour map according to the model.Results The quadratic polynomial fitting in the nonlinear model had a higher complex correlation coefficient,r=0.970 2.The porous hydrogel's 12 h cumulative permeation deviation between the predicted value and the theoretical value was 4.32% which was prepared by optimal formulation,and the model had good predictability.Conclusion The central composite design-response surface method was used to optimize the polyvinyl alcohol-propranolol hydrogel formulation,which could realize the simultaneous optimization of multiple indicators.The established model had good predictability and could be used for formulation optimization.
keywords:propranolol hydrogel  circulating freezing and thawing  central composite design-response surface method
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