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硝酸舍他康唑柔性纳米囊嵌入水凝胶中优化和特性研究,以提高抗真菌活性。

Optimization and characterization of sertaconazole nitrate flexisomes embedded in hydrogel for improved antifungal activity.

机构信息

a Department of Pharmaceutics , Sinhgad College of Pharmacy , Vadgaon (Bk) , Pune , Maharashtra , India.

出版信息

J Liposome Res. 2019 Mar;29(1):10-20. doi: 10.1080/08982104.2017.1402926. Epub 2017 Dec 4.

Abstract

The aim of the present research work was to develop, characterize and optimize sertaconazole nitrate (STZN) embedded flexisomes (STZN-FS) to improve the cutaneous anti-fungal activity of STZN. Flexisomes are self-aggregating, flexible, deformable lipidic vesicles possessing an aqueous core. A 3 factorial design was implemented to optimize the effects of the critical material attributes of concentration of phospholipid (X) and edge activator (X) on the critical quality attributes of particle size (Y), entrapment efficiency (Y), and deformability index (Y). Statistical analysis was performed to be identify the best fit model and determine its significance. The sizes of the optimized STZN-FS were found to be 246.2 ± 2.49 nm with entrapment efficiencies of 86.16 ± 0.56% and deformability indices of 30.46 ± 0.41. Zeta potential analysis showed negatively charged surface with a zeta potential value of -30.9 mV. TEM analysis showed spherical shapes, confirming the vesicular characteristics. The optimized STZN-FS were further formulated into hydrogels. The % drug diffusion of STZN-FS hydrogels was found to be 13.24% and drug deposition in the skin layers was found to be 83.54%, showing that a high concentration of the drug was available at the site of action. The zone of inhibition STZN-FS hydrogel (30 mm) was higher than the marketed formulation (22 mm) and the plain STZN hydrogel (14 mm) against Candida albicans. From the above studies, it was concluded that STZN loaded STZN-FS shows high flexibility and enhanced antifungal activity. STZN-FS are thus found to be potential carriers for drug deposition in skin layers without disturbing their integrity.

摘要

本研究工作的目的是开发、表征和优化硝酸舍他康唑(STZN)嵌入的 flexisomes(STZN-FS),以提高 STZN 的皮肤抗真菌活性。Flexisomes 是自聚集的、灵活的、可变形的脂质体,具有水核。实施了 3 因素设计来优化磷脂浓度(X)和边缘活性剂(X)的关键材料属性对粒径(Y)、包封效率(Y)和变形指数(Y)的关键质量属性的影响。进行了统计分析以确定最佳拟合模型并确定其显著性。优化的 STZN-FS 的大小为 246.2 ± 2.49nm,包封效率为 86.16 ± 0.56%,变形指数为 30.46 ± 0.41。Zeta 电位分析显示带负电荷的表面,Zeta 电位值为-30.9mV。TEM 分析显示出球形,证实了囊泡的特征。进一步将优化的 STZN-FS 制成水凝胶。STZN-FS 水凝胶的药物扩散百分比为 13.24%,药物在皮肤层中的沉积为 83.54%,表明在作用部位有高浓度的药物。STZN-FS 水凝胶的抑菌区(30mm)高于市售制剂(22mm)和普通 STZN 水凝胶(14mm)对白色念珠菌的抑菌作用。从上述研究中可以得出结论,载有 STZN 的 STZN-FS 表现出高灵活性和增强的抗真菌活性。因此,STZN-FS 被发现是在不破坏其完整性的情况下将药物沉积在皮肤层中的潜在载体。

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