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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >N-14-H-1 HMQC solid-state NMR as a powerful tool to study amorphous formulations - an exemplary study of paclitaxel loaded polymer micelles
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N-14-H-1 HMQC solid-state NMR as a powerful tool to study amorphous formulations - an exemplary study of paclitaxel loaded polymer micelles

机译:N-14-H-1 HMQC固态NMR作为研究非晶制剂的强大工具 - 一种示例性研究紫杉醇负载的聚合物胶束

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摘要

Amorphous drug-polymer formulations are complex materials and often challenging to characterize, even more so if the small molecule component itself is increasingly complex. In this work, we present N-14-H-1 HMQC magic-angle spinning (MAS) NMR experiments in the solid state as a promising tool to study amorphous formulations. Poly(2-oxazoline) based polymer micelles loaded with different amounts of the cancer drug paclitaxel serve to highlight the possibilities offered by these experiments: while the dense core of these polymeric micelles prevents NMR spectroscopic analysis in solution and the very similar N-15 chemical shifts hamper a solid-state NMR characterization based on this nucleus, N-14 is a very versatile alternative. N-14-H-1 HMQC experiments yield well-separated signals, which are spread over a large ppm range, and provide information on the symmetry of the nitrogen environment and probe N-14-H-1 through-space proximities. In this way, the overall complexity can be narrowed down to specific N-containing environments. The results from the experiments presented here represent a valuable puzzle piece, which helps to improve the structural understanding of drug-polymer formulations. It can be straightforwardly combined with complementary NMR spectroscopic experiments and other analytical techniques.
机译:无定形药物 - 聚合物配方是复杂的材料,并且通常具有挑战性,表征,甚至更常变,因此如果小分子组分本身越来越复杂。在这项工作中,我们在固态中呈现N-14-H-1 HMQC魔法角旋转(MAS)NMR实验作为研究非晶配方的有希望的工具。含有不同量的癌症药物紫杉醇的聚(2-恶唑啉)的聚合物胶束用于突出这些实验所提供的可能性:而这些聚合物胶束的致密核心可防止溶液中的NMR光谱分析和非常相似的N-15化学品妨碍妨碍基于该核的固态NMR表征,N-14是一个非常多功能的替代方案。 N-14-H-1 HMQC实验产生分离的信号,其在大的PPM范围内铺展,并提供有关氮环境对称性的信息和探针N-14-H-1通过空间近距离的信息。以这种方式,整体复杂性可以缩小到特定的含N个环境。这里提出的实验结果代表了一个有价值的难题件,有助于改善对药物聚合物制剂的结构理解。它可以简单地结合互补的NMR光谱实验和其他分析技术。

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