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采用磷 K 边 X 射线吸收近边结构光谱法对双膦酸盐水合物晶体进行表征。

Characterization of Bisphosphonate Hydrate Crystals by Phosphorus K-Edge X-Ray Absorption Near-Edge Structure Spectroscopy.

机构信息

Analytical Research & Development Laboratories, Sumitomo Pharma Co., Ltd.

Faculty of Pharmaceutical Sciences, Toho University.

出版信息

Chem Pharm Bull (Tokyo). 2024;72(5):480-486. doi: 10.1248/cpb.c24-00148.

Abstract

X-ray absorption near-edge structure (XANES) spectroscopy is a new method for the characterization of active pharmaceutical ingredients. XANES spectra show unique features depending on the electronic states of the X-ray absorbing elements and provide information about the chemical environment that affects the electronic states. In this study, six bisphosphonate hydrate crystals were used to investigate, for the first time, how the phosphorus K-edge XANES spectra are affected by the interatomic interactions and charged states of phosphonate moieties. Phosphorus K-edge XANES spectra showed several differences among the bisphosphonates. In particular, the chlorine atoms covalently bonded near the phosphonate and the number of electric charges of the phosphonate moieties seemed to have large effects on peak shape in XANES spectra. Unique shapes of the XANES spectra demonstrated that differences in interactions at the oxygen atoms of the phosphonate moieties could change the shapes of the XANES spectrum peaks to the extent that each material was distinguished based on the spectra. Since slight differences in interatomic interactions and charged states lead to variations in the spectra, XANES spectroscopy could be widely applied as the fingerprint method to evaluate active pharmaceutical ingredients.

摘要

X 射线吸收近边结构(XANES)光谱学是一种用于鉴定药物有效成分的新方法。XANES 光谱根据 X 射线吸收元素的电子态呈现独特的特征,并提供有关影响电子态的化学环境的信息。在这项研究中,首次使用六种双膦酸盐水合物晶体来研究磷 K 边 XANES 光谱如何受磷酸酯部分的原子间相互作用和电荷状态的影响。磷 K 边 XANES 光谱在双膦酸盐之间表现出一些差异。特别是,与磷酸酯共价键合的氯原子和磷酸酯部分的电荷数似乎对 XANES 光谱中的峰形有很大影响。XANES 光谱的独特形状表明,磷酸酯部分的氧原子之间相互作用的差异可以改变 XANES 光谱峰的形状,以至于可以根据光谱区分每种材料。由于原子间相互作用和电荷状态的微小差异导致光谱发生变化,因此 XANES 光谱学可以作为指纹方法广泛应用于评估药物有效成分。

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