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微乳凝胶制剂经皮递送达克罗米通:结构和体外评价。

Microemulsified Gel Formulations for Topical Delivery of Clotrimazole: Structural and In Vitro Evaluation.

机构信息

Department of Chemistry, University of Gujrat, Gujrat 50700, Pakistan.

Department of Chemistry, University of Education Lahore, Multan Campus 60700, Pakistan.

出版信息

Langmuir. 2021 Nov 23;37(46):13767-13777. doi: 10.1021/acs.langmuir.1c02590. Epub 2021 Nov 9.

Abstract

Microemulsified gels (μEGs) with fascinating functions have become indispensable as topical drug delivery systems due to their structural flexibility, high stability, and facile manufacturing process. Topical administration is an attractive alternative to traditional methods because of advantages such as noninvasive administration, bypassing first-pass metabolism, and improving patient compliance. In this article, we report on the new formulations of microemulsion-based gels suitable for topical pharmaceutical applications using biocompatible and ecological ingredients. For this, two biocompatible μE formulations comprising clove oil/Brij-35/water/ethanol (formulation A) and clove oil/Brij-35/water/1-propanol (formulation B) were developed to encapsulate and improve the load of an antimycotic drug, Clotrimazole (CTZ), and further gelatinized to control the release of CTZ through skin barriers. By delimiting the pseudo-ternary phase diagram, optimum μE formulations with clove oil (∼15%) and Brij-35 (∼30%) were developed, keeping constant surfactant/co-surfactant ratio (1:1), to upheld 2.0 wt % CTZ. The as-developed formulations were further converted into smart gels by adding 2.0 wt % carboxymethyl cellulose (CMC) as a cross-linker to adhere to the controlled release of CTZ through complex skin barriers. Electron micrographs show a fine, monodispersed collection of CTZ-μE nanodroplets (∼60 nm), which did not coalesce even after gelation, forming spherical CTZ-μEG (∼90 nm). However, the maturity of CTZ nanodroplets observed by dynamic light scattering suggests the affinity of CTZ for the nonpolar microenvironment, which was further supported by the peak-to-peak correlation of Fourier transform infrared (FTIR) analysis and fluorescence measurement. In addition, HPLC analysis showed that the permeation release of CTZ-μEG from rabbit skin in the ethanolic phosphate buffer (pH = 7.4) was significantly increased by >98% within 6.0 h. This indicates the sustained release of CTZ in μEBG and the improvement in transdermal therapeutic efficacy of CTZ over its traditional topical formulations.

摘要

具有迷人功能的微乳凝胶 (μEG) 因其结构灵活性、高稳定性和易于制造工艺而成为不可或缺的局部药物递送系统。由于具有非侵入性给药、绕过首过代谢和提高患者依从性等优势,局部给药成为传统方法的一种有吸引力的替代方案。在本文中,我们报告了使用生物相容性和生态友好型成分的新型基于微乳液的凝胶的配方,适用于局部药物应用。为此,开发了两种包含丁香油/Brij-35/水/乙醇(配方 A)和丁香油/Brij-35/水/1-丙醇(配方 B)的生物相容性 μE 配方,以包封和提高抗真菌药物克霉唑(CTZ)的负载量,并进一步通过凝胶化控制 CTZ 通过皮肤屏障的释放。通过限定伪三元相图,开发了含有约 15%丁香油和 30%Brij-35 的最佳 μE 配方,保持表面活性剂/助表面活性剂比(1:1)不变,以维持 2.0wt%的 CTZ。进一步将所开发的配方转化为智能凝胶,通过添加 2.0wt%的羧甲基纤维素(CMC)作为交联剂,通过复杂的皮肤屏障控制 CTZ 的释放。电子显微镜照片显示了 CTZ-μE 纳米液滴(约 60nm)的精细、单分散收集,即使在凝胶化后也没有聚结,形成了球形 CTZ-μEG(约 90nm)。然而,动态光散射观察到的 CTZ 纳米液滴的成熟度表明 CTZ 对非极性微环境的亲和力,傅里叶变换红外(FTIR)分析和荧光测量的峰到峰相关性进一步支持了这一点。此外,HPLC 分析表明,在乙醇磷酸盐缓冲液(pH=7.4)中,CTZ-μEG 从兔皮中的渗透释放在 6.0 小时内显著增加了 >98%。这表明 CTZ 在 μEBG 中的持续释放以及 CTZ 对其传统局部制剂的经皮治疗效果的改善。

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