首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Coherent anti-Stokes Raman Scattering (CARS) Microscopy Visualizes Pharmaceutical Tablets During Dissolution
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Coherent anti-Stokes Raman Scattering (CARS) Microscopy Visualizes Pharmaceutical Tablets During Dissolution

机译:相干抗斯托克斯拉曼散射(CARS)显微镜在溶解过程中使药物片剂可视化

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摘要

Traditional pharmaceutical dissolution tests determine the amount of drug dissolved over time by measuring drug content in the dissolution medium. This method provides little direct information about what is happening on the surface of the dissolving tablet. As the tablet surface composition and structure can change during dissolution, it is essential to monitor it during dissolution testing. In this work coherent anti-Stokes Raman scattering microscopy is used to image the surface of tablets during dissolution while UV absorption spectroscopy is simultaneously providing inline analysis of dissolved drug concentration for tablets containing a 50% mixture of theophylline anhydrate and ethyl cellulose. The measurements showed that in situ CARS microscopy is capable of imaging selectively theophylline in the presence of ethyl cellulose. Additionally, the theophylline anhydrate converted to theophylline monohydrate during dissolution, with needle-shaped crystals growing on the tablet surface during dissolution. The conversion of theophylline anhydrate to monohydrate, combined with reduced exposure of the drug to the flowing dissolution medium resulted in decreased dissolution rates. Our results show that in situ CARS microscopy combined with inline UV absorption spectroscopy is capable of monitoring pharmaceutical tablet dissolution and correlating surface changes with changes in dissolution rate.
机译:传统的药物溶出度测试通过测量溶出介质中的药物含量来确定一段时间内溶出的药物量。该方法几乎没有提供有关溶解片剂表面上发生的情况的直接信息。由于片剂表面成分和结构在溶出过程中会发生变化,因此在溶出度测试期间对其进行监控非常重要。在这项工作中,使用相干的抗斯托克斯拉曼散射显微镜对片剂在溶解过程中的表面进行成像,而紫外线吸收光谱同时对包含50%茶碱无水物和乙基纤维素混合物的片剂的溶解药物浓度进行在线分析。测量结果表明,在乙基纤维素存在下,原位CARS显微镜能够对茶碱进行选择性成像。另外,在溶解过程中茶碱无水物转化为茶碱一水合物,在溶解过程中针状晶体在片剂表面上生长。茶碱无水物转化为一水合物,并减少药物对流动溶出介质的暴露,导致溶出速率降低。我们的结果表明,原位CARS显微镜与在线UV吸收光谱相结合能够监测药物片剂的溶出度并将表面变化与溶出度的变化相关联。

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