Formulation and physicochemical control of mupirocin emulsion

Shahrzad Akbari, R. Asgharian
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Abstract

Background : The aim of this study was to develop a stable skin emulsifier from mupirocin. Materials and methods : This study was performed in the Department of Pharmacy, Tehran University of Pharmaceutical Sciences from November 2016 to September 2015. Initially, preformulation studies were performed on mupirocin powder and a standard diagram was drawn. Next, the bases of the drug-free emulsifiers were made, their stability was investigated and the superior formulation was selected. The next step was the formulation of the emulsion containing the drug. Further studies such as determining the amount of active ingredient, releasing the drug in vitro and determining the aura of stunting were performed. Results : Emulsifier containing 940 carbomer, 5% liquid paraffin, 0.4% tween 20 and 1.1% spin 20 were selected as the top formulation. The results of stability, dispersibility and other tests were appropriate. The amount of active ingredient in the formulations was between 90 and 110%. Within 8 hours, the drug was released at approximately 85%. Rheologically, the formulation followed non-Newtonian behavior. It also showed the behavior of plastics and thixotropes. Observing the growth inhibition zone around drug-containing formulations indicateed that mupirocin was released from the emulsion base and prevented the growth of Staphylococcus aureus bacteria. Conclusion : A stable emulsion formulation can be prepared from mupirocin. It is suggested that accelerated stability studies and periodic and scale-up formulations be carried out for industrial production.
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莫匹罗星乳剂的配方及理化控制
背景:以莫匹罗星为原料制备稳定的皮肤乳化剂。材料与方法:本研究于2016年11月- 2015年9月在德黑兰药科大学药学系进行。首先对莫匹罗星粉末进行了处方前研究,并绘制了标准图。其次,制备了无药乳化剂的碱,考察了其稳定性,选择了最佳配方。下一步是配制含有该药物的乳剂。进一步的研究,如确定有效成分的量,体外释放药物和确定发育迟缓的先兆。结果:选择含940卡波姆、5%液体石蜡、0.4%吐温20、1.1%自旋20的乳化剂为最佳配方。稳定性、分散性等试验结果较好。制剂中有效成分含量在90% ~ 110%之间。8小时内,药物以85%的速率释放。流变学上,这个公式遵循非牛顿的行为。它还显示了塑料和触变物的行为。观察含药制剂周围的生长抑制带,发现莫匹罗星从乳剂基质中释放出来,抑制了金黄色葡萄球菌的生长。结论:用莫匹罗星可制得稳定的乳状制剂。建议为工业生产进行加速稳定性研究和定期和规模化配方。
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