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Development of a Method for the Quantification of Clotrimazole and Itraconazole and Study of Their Stability in a New Microemulsion for the Treatment of Sporotrichosis

机译:克霉唑和伊曲康唑定量方法的开发及其在新型微乳剂治疗孢子菌病中的稳定性研究

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摘要

Sporotrichosis occurs worldwide and is caused by the fungus Sporothrix brasiliensis. This agent has a high zoonotic potential and is transmitted mainly by bites and scratches from infected felines. A new association between the drugs clotrimazole and itraconazole is shown to be effective against S. brasiliensis yeasts. This association was formulated as a microemulsion containing benzyl alcohol as oil, Tween® 60 and propylene glycol as surfactant and cosurfactant, respectively, and water. Initially, the compatibility between clotrimazole and itraconazole was studied using differential scanning calorimetry (DSC), thermogravimetric analysis (TG), Fourier transform infrared spectroscopy (FTIR), and X-ray powder diffraction (PXRD). Additionally, a simple and efficient analytical HPLC method was developed to simultaneously determine the concentration of clotrimazole and itraconazole in the novel microemulsion. The developed method proved to be efficient, robust, and reproducible for both components of the microemulsion. We also performed an accelerated stability study of this formulation, and the developed analytical method was applied to monitor the content of active ingredients. Interestingly, these investigations led to the detection of a known clotrimazole degradation product whose structure was confirmed using NMR and HRMS, as well as a possible interaction between itraconazole and benzyl alcohol.
机译:孢子丝菌病在世界范围内发生,并且是由巴西Sporothrix真菌引起的。该病原体具有很高的人畜共患病潜力,主要通过被感染猫科动物的叮咬和抓伤传播。药物克霉唑和伊曲康唑之间的新联系被证明对巴西乳链霉菌酵母有效。这种缔合体被配制为一种微乳液,其中分别含有苯甲醇作为油,Tween 60和丙二醇作为表面活性剂和助表面活性剂以及水。最初,使用差示扫描量热法(DSC),热重分析(TG),傅里叶变换红外光谱(FTIR)和X射线粉末衍射(PXRD)研究了克霉唑和伊曲康唑之间的相容性。此外,开发了一种简单高效的分析HPLC方法,可同时测定新型微乳中克霉唑和伊曲康唑的浓度。对于微乳液的两种组分,开发的方法被证明是高效,稳健和可重现的。我们还对该配方进行了加速稳定性研究,并将开发的分析方法用于监测活性成分的含量。有趣的是,这些研究导致检测到一种已知的克霉唑降解产物,其结构已通过NMR和HRMS确认,以及伊曲康唑与苯甲醇之间可能的相互作用。

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