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Effect of microemulsion in topical sertaconazole hydrogel: in vitro and in vivo study

机译:微乳剂在局部舍他康唑水凝胶中的作用:体内外研究

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Abstract Purpose: A topical microemulsion (ME)-based hydrogel was developed to enhance permeation of an antifungal drug, sertaconazole (STZL) for effective eradication of cutaneous fungal infection. Methods: Pseudo-ternary phase diagrams were used to determine the existence of MEs region. ME formulations were prepared with oleic acid, Tween 80, propylene glycol (PG) and water. Carbopol 940 (0.75% w/w) was used for preparation of hydrogel of STZL microemulsion (HSM) and characterized. The in vitro and in vivo evaluation of prepared HSM and commercial cream of STZL were compared. Results: The viscosity, average droplet size and pH of HSM were 154.23?±?0.54 to 162.52?±?0.21?Pas, 42.3–91.7?nm and 6.9–7.2?, respectively. Permeation rate of STZL from optimized formulation (HSM-4), composed with oleic acid (8.75 % w/w), Tween 80 (33.35% w/w), PG (33.35% w/w) and water (24.55% w/w) was observed higher in compare with other HSMs and commercial cream. HSM-4 was stable, three times higher drug retention capacity in skin than commercial cream and did not caused any erythema or edema based on skin sensitivity study on rabbit. The average zone of inhibition of HSM-4 (23.54?±?0.72?mm) was higher in compare with commercial cream (16.53?±?0.63?mm) against Candida albicans. Conclusion: The results of study showed that ME played a major role in permeation enhancing and skin retention effect of HSM and the concentration of STZL used for cutaneous fungal infection could be decreased by using ME based hydrogel preparation.
机译:摘要目的:开发一种基于局部微乳液(ME)的水凝胶,以增强抗真菌药物舍他康唑(STZL)的渗透性,以有效根除皮肤真菌感染。方法:使用伪三元相图确定ME区域的存在。用油酸,吐温80,丙二醇(PG)和水制备ME制剂。 Carbopol 940(0.75%w / w)用于制备STZL微乳液(HSM)的水凝胶并进行表征。比较了制备的HSM和STZL市售乳膏的体外和体内评价。结果:HSM的粘度,平均液滴尺寸和pH分别为154.23?±?0.54至162.52?±?0.21?Pas,42.3–91.7?nm和6.9–7.2?。优化配方(HSM-4)的STZL渗透率,由油酸(8.75%w / w),吐温80(33.35%w / w),PG(33.35%w / w)和水(24.55%w / w)组成w)与其他H​​SM和市售奶油相比,观察到更高。根据对兔子的皮肤敏感性研究,HSM-4稳定,在皮肤中的药物保留能力是市售乳膏的三倍,并且不会引起任何红斑或水肿。对白色念珠菌的HSM-4抑制作用的平均抑制区(23.54?±?0.72?mm)高于市售乳膏(16.53?±?0.63?mm)。结论:研究结果表明,ME在水凝胶的渗透促进和皮肤滞留作用中起主要作用,而基于ME的水凝胶制剂可以降低STZL用于皮肤真菌感染的浓度。

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