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Investigating the Dissolution Performance of Amorphous Solid Dispersions Using Magnetic Resonance Imaging and Proton NMR

机译:使用磁共振成像和质子NMR研究非晶态固体分散体的溶解性能

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摘要

We have investigated the dissolution performance of amorphous solid dispersions of poorly water-soluble bicalutamide in a Kollidon VA64 polymeric matrix as a function of the drug loading (5% vs. 30% bicalutamide). A combined suite of state-of-the-art analytical techniques were employed to obtain a clear picture of the drug release, including an integrated magnetic resonance imaging UV-Vis flow cell system and 1H-NMR. Off-line 1H-NMR was used for the first time to simultaneously measure the dissolution profiles and rates of both the drug and the polymer from a solid dispersion. MRI and 1H-NMR data showed that the 5% drug loading compact erodes linearly, and that bicalutamide and Kollidon VA64 are released at approximately the same rate from the molecular dispersion. For the 30% extrudate, data indicated a slower water ingress into the compact which corresponds to a slower dissolution rate of both bicalutamide and Kollidon VA64.
机译:我们已经研究了水溶性差的比卡鲁胺在Kollidon VA64聚合物基质中的无定形固体分散体的溶解性能随药物载量的变化(5%比30%比卡鲁胺)。结合使用了一组最新的分析技术来获得清晰的药物释放图,包括集成的磁共振成像UV-Vis流通池系统和 1 H- NMR。离线 首次使用1 1 H-NMR同时测量固体分散体中药物和聚合物的溶出度和速率。 MRI和<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm3” overflow =“ scroll”> 1 1 H-NMR数据表明,载药量为5%的分子呈线性侵蚀,比卡鲁胺和Kollidon VA64从分子分散体中以大约相同的速率释放。对于30%的挤出物,数据表明水进入压坯的速度较慢,这对应于比卡鲁胺和Kollidon VA64的溶解速度较慢。

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