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首页> 外文期刊>International Journal of Nanomedicine >Formulation development and optimization of palm kernel oil esters-based nanoemulsions containing sodium diclofenac
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Formulation development and optimization of palm kernel oil esters-based nanoemulsions containing sodium diclofenac

机译:含双氯芬酸钠的棕榈仁油酯基纳米乳剂的配方开发与优化

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Abstract: Response surface methodology was employed to study the effect of formulation composition variables, water content (60%–80%, w/w) and oil and surfactant (O/S) ratio (0.17–1.33), as well as high-shear emulsification conditions, mixing rate (300–3,000 rpm) and mixing time (5–30 minutes) on the properties of sodium diclofenac-loaded palm kernel oil esters-nanoemulsions. The two response variables were droplet size and viscosity. Optimization of the conditions according to the four variables was performed for preparation of the nanoemulsions with the minimum values of particle size and viscosity. The results showed that the experimental data could be sufficiently fitted into a third-order polynomial model with multiple regression coefficients (R2) of 0.938 and 0.994 for the particle size and viscosity, respectively. Water content, O/S ratio and mixing time, quadrics of all independent variables, interaction between O/S ratio and mixing rate and between mixing time and rate, as well as cubic term of water content had a significant effect (P<0.05) on the particle size of nanoemulsions. The linear effect of all independent variables, quadrics of water content and O/S ratio, interaction of water content and O/S ratio, as well as cubic term of water content and O/S ratio had significant effects (P<0.05) on the viscosity of all nanoemulsions. The optimum conditions for preparation of sodium diclofenac nanoemulsions were predicted to be: 71.36% water content; 0.69 O/S ratio; 950 rpm mixing rate, and 5 minute mixing time. The optimized formulation showed good storage stability in different temperatures.
机译:摘要:采用响应面方法研究了配方组成变量,水含量(60%–80%,w / w),油和表面活性剂(O / S)比(0.17–1.33)以及剪切乳化条件,混合速率(300–3,000 rpm)和混合时间(5–30分钟)对负载双氯芬酸钠的棕榈仁油酯-纳米乳液的性能影响。两个响应变量是液滴大小和粘度。根据四个变量对条件进行了优化,以制备具有最小粒径和粘度值的纳米乳液。结果表明,实验数据可以充分拟合到三阶多项式模型,其粒径和粘度的多重回归系数(R2)分别为0.938和0.994。含水量,O / S比和混合时间,所有自变量的二次方,O / S比与混合速率之间以及混合时间与速率之间的相互作用以及水含量的立方项均具有显着影响(P <0.05)纳米乳液的粒径。所有自变量,水含量和O / S比的二次方,水含量和O / S比的相互作用以及水含量和O / S比的立方项的线性效应对P值有显着影响(P <0.05)。所有纳米乳液的粘度。制备双氯芬酸钠纳米乳液的最佳条件预计为:含水量7​​1.36%; O / S比为0.69; 950 rpm的混合速率和5分钟的混合时间。优化配方在不同温度下均显示出良好的储存稳定性。

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