水基聚合物分散体:阿替洛尔胃肠道治疗系统配方变量筛选的Plackett-Burman设计

S.V Sastry, M.A Khan
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引用次数: 39

摘要

采用聚合物乳化法制备醋酸纤维素假酸酯,制备了阿替洛尔双层渗透控制胃肠道治疗系统。孔口大小、包被厚度、高分子赋形剂的用量和性质、渗透剂的用量等因素影响GITS的药物释放。因此,本研究采用7因素,12次Plackett-Burman筛选设计来评估CA假胶粘剂包被阿替洛尔GITS的配方变量。研究的变量包括孔口尺寸、包膜增重%、氯化钠、Polyox®N80和303的用量以及Carbopol®934P和974P对药物释放的影响。筛选设计表明,孔孔尺寸、包被增重%和caropol®934P用量对阿替洛尔体外释放有显著影响。响应变量为24 h累积阿替洛尔释放率(Y),并以2、6、12、18 h的释放率为约束条件,得到的多项式方程为Y24=149.82−0.13X1−0.34X2+0.06X3−0.13X4−0.23X5−76.25X6−2.46X7。结果表明:约束条件下影响药物释放的因素依次为包衣增重% gt、Carbopol®934P>、Polyox®N80>、Carbopol®974P>、Polyox®303>、氯化钠用量>、孔口尺寸;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aqueous based polymeric dispersion: Plackett–Burman design for screening of formulation variables of Atenolol Gastrointestinal Therapeutic System

Bilayered osmotically controlled Gastrointestinal Therapeutic System of atenolol has been obtained by using cellulose acetate pseudolatex prepared by polymer emulsification method. Various factors such as orifice size, coating thickness, amount and nature of polymeric excipients, and amount of osmotic agent influence the drug release from GITS. Therefore, in the present study a 7-factor, 12-run Plackett–Burman screening design was employed to evaluate the formulation variables for atenolol GITS coated with CA pseudolatex. The variables studied were orifice size, %coating weight gain, amounts of sodium chloride, Polyox® N80 and 303, and Carbopol® 934P and 974P on drug release. The screening design has revealed that orifice size, %coating weight gain and amount of Carbopol® 934P have prominent influence on in-vitro atenolol release. The response variable was cumulative percent atenolol released (Y) in 24 h with constraints on percent release at 2, 6, 12 and 18 h. The polynomial equation obtained was Y24=149.82−0.13X1−0.34X2+0.06X3−0.13X4−0.23X5−76.25X6−2.46X7. The results indicated that the drug release under constrained conditions was influenced by the factors with decreasing order of importance as %coating weight gain>Carbopol® 934P>Polyox® N80>Carbopol® 974P>Polyox® 303>amount of sodium chloride>orifice size.

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