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New approaches to identification and characterization of tioconazole in raw material and in pharmaceutical dosage forms

机译:鉴定和表征原料药和药物剂型中噻康唑的新方法

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摘要

Tioconazole (TCZ), a broad-spectrum antifungal agent, has significant activity against Candida albicans and other Candida species, and therefore, it is indicated for the topical treatment of superficial mycoses. The main goal of this work is to report an exhaustive identification and characterization procedure to improve and facilitate the online quality control and continuous process monitoring of TCZ in bulk material and loaded in two different dosage forms: ovules and nail lacquer. The methodologies were based on thermal (differential scanning calorimetry (DSC), melting point, and thermogravimetry (TG)), spectroscopic (ultraviolet (UV), Raman, near infrared (NIR), infrared spectroscopy coupled to attenuated total reflectance (FTIR-ATR), and nuclear magnetic resonance (NMR)), microscopic and X-ray diffraction (XRD). The TCZ bulk powder showed a high crystallinity, as observed by XRD, with a particles size distribution (3–95 µm) resolved by microscopic measurements. TCZ melting point (82.8 °C) and a degradation peak centered at 297.8 °C were obtained by DSC and DTG, respectively. An unambiguous structure elucidation of TCZ was obtained by mono- and two- dimensional 1H and 13C NMR spectral data analysis. The FTIR-ATR, Raman and NIR spectra of both the raw material and the commercial products were analyzed and their characteristic bands were tabulated. The best methods for TCZ identification in ovules were DSC, TG, XRD, NIR and Raman, while NIR and FTIR-ATR were the most appropriate techniques to analyze it in the nail lacquer. DSC, TG, DRX, Raman, FTIR-ATR and NIR spectroscopy are effective techniques to be used in online process analysis, because they do not require sample preparation, and they are considerably sensitive to analyze complex samples.
机译:噻康唑(TCZ)是一种广谱抗真菌剂,对白色念珠菌和其他念珠菌具有显着活性,因此,它可用于表皮真菌病的局部治疗。这项工作的主要目标是报告详尽的鉴定和表征程序,以改善和促进散装材料中的TCZ的在线质量控制和连续过程监控,并以两种不同的剂型(胚珠和指甲油)装载。该方法基于热分析(差示扫描量热法(DSC),熔点和热重分析法(TG)),分光镜(紫外线(UV),拉曼,近红外(NIR),红外光谱结合衰减全反射率(FTIR-ATR) ),核磁共振(NMR),显微镜和X射线衍射(XRD)。 TCZ散装粉末显示出高结晶度,如XRD所观察到的,其粒度分布(3-95μm)通过显微镜测量得到解析。通过DSC和DTG分别获得TCZ熔点(82.8℃)和以297.8℃为中心的降解峰。通过一维和二维 1 H和 13 C NMR光谱数据分析获得了TCZ的明确结构解析。分析了原料和商品的FTIR-ATR,拉曼光谱和NIR光谱,并列出了其特征谱带。在胚珠中识别TCZ的最佳方法是DSC,TG,XRD,NIR和Raman,而NIR和FTIR-ATR是在指甲油中分析它的最合适技术。 DSC,TG,DRX,拉曼,FTIR-ATR和NIR光谱是在线过程分析中有效的技术,因为它们不需要样品制备,并且对复杂样品的分析非常敏感。

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