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微乳型他克莫司乳膏抑制细胞因子基因表达并提高特应性皮炎的治疗效果。

Suppression of cytokine gene expression and improved therapeutic efficacy of microemulsion-based tacrolimus cream for atopic dermatitis.

机构信息

Pharmacy Department, Faculty of Technology and Engineering, The Maharaja Sayajirao University of Baroda, Post. Box No. 51, Kalabhavan, Vadodara, 390002, Gujarat, India.

出版信息

Drug Deliv Transl Res. 2012 Apr;2(2):129-41. doi: 10.1007/s13346-012-0060-8.

Abstract

Tacrolimus ointment being occlusive is known to give higher dermal penetration but offers limited patient acceptance in treatment of atopic dermatitis, especially in tropical countries. Hence, the aim of this study was to develop, characterize, and evaluate a microemulsion-based cream formulation of tacrolimus against ointment in hapten-induced murine model of dermatitis. Tacrolimus-loaded microemulsion having mean globule size below 25 nm was mixed with cetomacrogol cream base. The microemulsion-based cream exhibited a significantly faster drug release through semipermeable cellulose acetate membrane in comparison to commercially available ointment. The drug retention in rodent and human cadaver skin with cream was almost twofold greater in comparison to the commercially available ointment. Further, in vivo evaluation using a fluorescent marker revealed a greater and deeper accumulation of marker in skin with cream. In vivo studies in mice revealed a prompt and significant reduction in ear swelling. The reduction in inflammatory cytokine gene expression as evaluated by semiquantitative reverse transcriptase polymerase chain reaction was also significantly higher with cream. The better efficacy of cream was reflected in histopathology as well as in morphological observations at the site of application. Thus, microemulsion-based cream presents a possibility of development of an efficacious cream vehicle and a scope for dose reduction which needs to be confirmed in clinical studies.

摘要

他克莫司软膏具有封闭性,已知其具有更高的皮肤穿透性,但在治疗特应性皮炎方面,患者接受度有限,尤其是在热带国家。因此,本研究旨在开发、表征和评估微乳剂乳膏制剂的他克莫司在变应原诱导的小鼠皮炎模型中的应用,以对抗软膏。载药微乳的平均粒径小于 25nm,与鲸蜡硬脂醇聚醚-20 乳膏基质混合。与市售软膏相比,微乳剂乳膏通过半渗透醋酸纤维素膜表现出明显更快的药物释放。与市售软膏相比,乳膏在啮齿动物和人体尸体皮肤中的药物保留率几乎增加了一倍。此外,使用荧光标记物进行的体内评估显示,与软膏相比,标记物在皮肤中的积累量更大、更深。体内研究表明,乳膏能迅速显著减少耳部肿胀。半定量逆转录聚合酶链反应评估的炎性细胞因子基因表达的减少也显著更高。乳膏的更好疗效在组织病理学以及应用部位的形态观察中也得到了反映。因此,微乳剂乳膏为开发有效的乳膏载体提供了可能性,并为减少剂量提供了研究空间,这需要在临床研究中进一步证实。

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