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Terahertz Pulsed Imaging and Magnetic Resonance Imaging as Tools to Probe Formulation Stability

机译:太赫兹脉冲成像和磁共振成像作为探测配方稳定性的工具

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摘要

Dissolution stability over the entire shelf life duration is of critical importance to ensure the quality of solid dosage forms. Changes in the drug release profile during storage may affect the bioavailability of drug products. This study investigated the stability of a commercial tablet (Lescol® XL) when stored under accelerated conditions (40 °C/75% r.h.). Terahertz pulsed imaging (TPI) was used to investigate the structure of the tablet coating before and after the accelerated aging process. The results indicate that the coating was reduced in thickness and exhibited a higher density after being stored under accelerated conditions for four weeks. In situ magnetic resonance imaging (MRI) of the water penetration processes during tablet dissolution in a USP-IV dissolution cell equipped with an in-line UV-vis analyzer was carried out to study local differences in water uptake into the tablet matrix between the stressed and unstressed state. The drug release profiles of the Lescol® XL tablet before and after the accelerated storage stability testing were compared using a “difference” factor f1 and a “similarity” factor f2. The results reveal that even though the physical properties of the coating layers changed significantly during the stress testing, the coating protected the tablet matrix and the densification of the coating polymer had no adverse effect on the drug release performance.
机译:在整个保质期内的溶解稳定性对于确保固体剂型的质量至关重要。储存期间药物释放曲线的变化可能会影响药物产品的生物利用度。这项研究研究了在加速条件下(40°C / 75%r.h.)储存的商用片剂(Lescol ® XL)的稳定性。太赫兹脉冲成像(TPI)用于研究加速老化过程之前和之后的片剂包衣结构。结果表明,在加速条件下储存四周后,涂层厚度减小,密度更高。在配备在线UV-vis分析仪的USP-IV溶出池中对溶出片剂期间水渗透过程的原位磁共振成像(MRI)进行了研究,以研究在压力作用下片剂基质中水吸收的局部差异和无压力的状态。使用“差异”因子f1和“相似性”因子f2比较了在加速储存稳定性测试前后Lescol ® XL片剂的药物释放曲线。结果表明,即使在压力测试期间包衣层的物理性质发生了显着变化,包衣也保护了片剂基质,并且包衣聚合物的致密化对药物释放性能没有不利影响。

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