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通过微聚焦电子衍射从模糊样品中发现盐酸氧化刺桐碱一水合物多晶型物。

Discovery of oxyacanthine dihydrochloride monohydrate polymorphs from obfuscated samples by MicroED.

作者信息

Lin Jieye, Paz Orel, Unge Johan, Gonen Tamir

机构信息

Department of Biological Chemistry, University of California, Los Angeles, 615 Charles E. Young Drive South, Los Angeles, California 90095, United States.

These authors contributed equally to this work.

出版信息

bioRxiv. 2025 Jul 5:2025.07.03.663078. doi: 10.1101/2025.07.03.663078.

Abstract

It is estimated that more than 50% of marketed pharmaceuticals are derived from natural products. Structural characterization of natural products and their drug formulations is essential for the pharmaceutical industry. Here we report the use of microcrystal electron diffraction (MicroED), to identify two polymorphic crystal structures of oxyacanthine dihydrochloride monohydrate from obfuscated samples that were mislabeled as "berbamine dihydrochloride". The two polymorphs display primary conformational differences in one of the tetrahydroisoquinoline rings: one polymorph exhibits an intermediate conformation between half-chair and half-boat, while the other adopts a distinct half-boat conformation. Analysis of their structures, energies and crystal packing diagrams indicates a thermodynamic preference for a transformation into the latter. This study highlights the value of integrating MicroED into pharmaceutical pipelines as an efficient tool for structural analysis and quality control.

摘要

据估计,超过50%的上市药品源自天然产物。天然产物及其药物制剂的结构表征对制药行业至关重要。在此,我们报告了使用微晶电子衍射(MicroED)从被误标记为“盐酸小檗胺”的混淆样品中鉴定出盐酸氧化爵床碱一水合物的两种多晶型晶体结构。这两种多晶型在其中一个四氢异喹啉环中表现出主要的构象差异:一种多晶型在半椅式和半船式之间呈现中间构象,而另一种则采用独特的半船式构象。对其结构、能量和晶体堆积图的分析表明,热力学上倾向于转变为后者。这项研究突出了将MicroED作为结构分析和质量控制的有效工具整合到制药流程中的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e690/12236497/93323ca96fe1/nihpp-2025.07.03.663078v1-f0001.jpg

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