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NMR characterization of a novel bile acid sequestrant, DMP 504.

机译:新型胆汁酸螯合剂DMP 504的NMR表征。

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摘要

DMP 504, a potential bile acid sequestrant for the treatment of hypercholesterolemia, is a highly insoluble, cross-linked polymer which does not lend itself to ordinary means of characterization used for drug substances in the pharmaceutical industry. Therefore, alternative characterization techniques have been sought. As part of an effort into extensive characterization of DMP 504 drug substance, nuclear magnetic resonance (NMR) was employed to provide insight into details of the DMP 504 polymer structure. The primary motivation for determining the structure of the polymer chain is to relate the DMP 504 structure to its performance properties as a bile acid sequestrant. Characterization of the polymer chain and understanding of the structural basis of its properties is essential in optimizing and controlling the manufacture of reproducible drug substance. NMR has proven a versatile tool for the description of polymer structure and dynamics because of the wide range of nuclear interactions affecting the NMR signal. This allows the design of experiments to elicit information about specific polymer interactions or properties. The methods of sample preparation utilized to obtain NMR spectra of the insoluble polymer, as well as a discussion and comparison of results for the characterization of DMP 504 obtained using several different NMR techniques will be presented.
机译:DMP 504是一种潜在的胆汁酸螯合剂,可用于治疗高胆固醇血症,它是一种高度不溶的交联聚合物,无法适应制药行业中用于药物的常规表征方法。因此,已经寻求替代的表征技术。作为对DMP 504药物进行广泛表征的努力的一部分,核磁共振(NMR)用于深入了解DMP 504聚合物结构的细节。确定聚合物链结构的主要动机是使DMP 504结构与其作为胆汁酸螯合剂的性能相关。聚合物链的表征以及其性质的结构基础的理解对于优化和控制可再现原料药的生产至关重要。核磁共振已经证明是描述聚合物结构和动力学的通用工具,因为影响核磁共振信号的核相互作用范围广泛。这样可以进行实验设计,以得出有关特定聚合物相互作用或特性的信息。将介绍用于获得不溶聚合物的NMR光谱的样品制备方法,以及使用几种不同的NMR技术对DMP 504进行表征的结果的讨论和比较。

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