Qureshi Muhammad Imran, Jamil Qazi Adnan, Usman Faisal, Wani Tanveer A, Farooq Mudassir, Shah Hamid Saeed, Ahmad Hassan, Khalil Ruqaiya, Sajjad Muhammad, Zargar Seema, Kausar Safina
Department of Pharmaceutics, Faculty of Pharmacy, The Islamia University of Bahawalpur, Bahawalpur 66000, Pakistan.
Department of Pharmaceutics, Faculty of Pharmacy, Bahauddin Zakariya University, Multan 60800, Pakistan.
Gels. 2023 Sep 21;9(9):767. doi: 10.3390/gels9090767.
Tioconazole (TCZ) is a broad-spectrum fungicidal BCS class II drug with reported activity against , , and certain bacteria. We report the use of TCZ-loaded transethosomes (TEs) to overcome the skin's barrier function. TCZ-loaded TEs were fabricated by using a cold method with slight modification. Box-Behnken composite design was utilized to investigate the effect of independent variables. The fabricated TEs were assessed with various physicochemical characterizations. The optimized formulation of TCZ-loaded TEs was incorporated into gel and evaluated for pH, conductivity, drug content, spreadability, rheology, in vitro permeation, ex vivo permeation, and in vitro and in vivo antifungal activity. The fabricated TCZ-loaded TEs had a % EE of 60.56 to 86.13, with particle sizes ranging from 219.1 to 757.1 nm. The SEM images showed spherically shaped vesicles. The % drug permeation was between 77.01 and 92.03. The kinetic analysis of all release profiles followed Higuchi's diffusion model. The FTIR, DSC, and XRD analysis showed no significant chemical interactions between the drug and excipients. A significantly higher antifungal activity was observed for TCZ-loaded transethosomal gel in comparison to the control. The in vivo antifungal study on albino rats indicated that TCZ-loaded transethosomal gel showed a comparable therapeutic effect in comparison to the market brand Canesten. Molecular docking demonstrated that the TCZ in the TE composition was surrounded by hydrophobic excipients with increased overall hydrophobicity and better permeation. Therefore, TCZ in the form of transethosomal gel can serve as an effective drug delivery system, having the ability to penetrate the skin and overcome the stratum corneum barrier with improved efficacy.
噻康唑(TCZ)是一种广谱杀菌的BCS II类药物,据报道对、、和某些细菌有活性。我们报道了使用载有噻康唑的传递体(TEs)来克服皮肤的屏障功能。载有噻康唑的传递体采用稍加修改的冷法制备。采用Box-Behnken复合设计研究自变量的影响。对制备的传递体进行了各种物理化学表征。将优化后的载噻康唑传递体制剂制成凝胶,并对其pH值、电导率、药物含量、铺展性。流变学、体外渗透、离体渗透以及体外和体内抗真菌活性进行评估。制备的载噻康唑传递体的包封率为60.56%至86.13%,粒径范围为219.1至757.1nm。扫描电子显微镜图像显示为球形囊泡。药物渗透百分比在77.01%至92.03%之间。所有释放曲线的动力学分析均符合Higuchi扩散模型。傅里叶变换红外光谱、差示扫描量热法和X射线衍射分析表明,药物与辅料之间无明显化学相互作用。与对照组相比,载噻康唑传递体凝胶的抗真菌活性显著更高。对白化大鼠的体内抗真菌研究表明,载噻康唑传递体凝胶与市售品牌凯妮汀相比具有相当的治疗效果。分子对接表明,传递体组合物中的噻康唑被疏水性辅料包围,整体疏水性增加,渗透性更好。因此,传递体凝胶形式的噻康唑可作为一种有效的药物递送系统,能够穿透皮肤并克服角质层屏障,提高疗效。